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Groups > sci.physics.relativity > #391847 > unrolled thread
| Started by | numbernumber1964@gmail.com |
|---|---|
| First post | 2016-09-08 22:25 -0700 |
| Last post | 2016-10-09 11:41 -0700 |
| Articles | 20 on this page of 115 — 14 participants |
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MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-08 22:25 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-09 13:53 +0000
Re: MIT Lunar reflector experiment dlzc <dlzc1@cox.net> - 2016-09-09 10:03 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-09 10:31 -0700
Re: MIT Lunar reflector experiment dlzc <dlzc1@cox.net> - 2016-09-09 11:43 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-09 12:06 -0700
Re: MIT Lunar reflector experiment "Paul B. Andersen" <relativity@paulba.no> - 2016-09-10 11:46 +0200
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-10 06:53 -0700
Re: MIT Lunar reflector experiment "Paul B. Andersen" <relativity@paulba.no> - 2016-09-11 09:03 +0200
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-11 05:57 -0700
Re: MIT Lunar reflector experiment Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-11 10:04 -0500
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-11 10:32 -0700
Re: MIT Lunar reflector experiment Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-12 11:52 -0500
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-13 01:23 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-13 04:51 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-13 10:39 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-13 16:10 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-14 06:05 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-14 06:22 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-15 00:14 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-15 02:52 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-15 05:48 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-15 06:29 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-15 13:42 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-15 14:57 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-16 10:34 -0700
Re: MIT Lunar reflector experiment Odd Bodkin <bodkinodd@gmail.com> - 2016-09-16 14:53 -0500
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-17 02:21 -0700
Re: MIT Lunar reflector experiment Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-17 10:37 -0500
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-17 10:21 -0700
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-17 15:36 -0700
Re: MIT Lunar reflector experiment Odd Bodkin <bodkinodd@gmail.com> - 2016-09-19 09:37 -0500
Re: MIT Lunar reflector experiment Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-21 23:18 -0500
Re: MIT Lunar reflector experiment dsr@mail.lns.cornell.edu (Daniel S. Riley) - 2016-09-25 16:01 -0400
Re: MIT Lunar reflector experiment jaymoseley@hotmail.com - 2016-09-17 15:47 -0700
What does "classical" mean? Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-16 22:35 -0500
Re: What does "classical" mean? Ned Latham <nedlatham@woden.valhalla.oz> - 2016-09-17 05:13 +0000
Re: What does "classical" mean? Ned Latham <nedlatham@woden.valhalla.oz> - 2016-09-17 08:31 +0000
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-15 03:04 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-10 02:33 +0000
Re: MIT Lunar reflector experiment Sylvia Else <sylvia@not.at.this.address> - 2016-09-11 22:32 +1000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-09 16:36 -0700
Re: MIT Lunar reflector experiment Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-09 20:20 -0500
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-09 16:37 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-09 16:40 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-09 16:43 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-10 02:38 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-09 19:46 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-10 03:41 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-09 19:52 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-10 14:48 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-10 14:35 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-10 20:48 -0700
Re: MIT Lunar reflector experiment Tom Roberts <tjroberts137@sbcglobal.net> - 2016-09-12 11:55 -0500
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-10 14:38 -0700
Re: MIT Lunar reflector experiment Gary Harnagel <hitlong@yahoo.com> - 2016-09-10 16:43 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-11 00:05 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-10 17:41 -0700
Re: MIT Lunar reflector experiment Gary Harnagel <hitlong@yahoo.com> - 2016-09-10 19:08 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-10 20:56 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-11 04:35 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-10 17:58 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-11 13:24 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-11 13:54 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-11 15:21 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-11 15:21 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-14 11:35 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-14 16:56 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-15 14:38 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-15 15:18 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-16 16:34 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-16 17:50 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-17 11:51 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-18 02:50 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-17 16:22 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-17 21:22 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-18 12:26 -0700
Re: MIT Lunar reflector experiment Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> - 2016-09-18 12:40 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-19 00:53 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-18 12:41 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-19 01:02 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-18 19:33 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-19 14:21 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-19 15:18 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-20 02:53 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-20 09:15 -0700
Re: MIT Lunar reflector experiment Gary Harnagel <hitlong@yahoo.com> - 2016-09-20 12:24 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-20 13:08 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-20 21:36 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-20 14:17 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-20 15:22 -0700
Re: MIT Lunar reflector experiment Gary Harnagel <hitlong@yahoo.com> - 2016-09-21 14:57 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-21 11:35 -0700
Re: MIT Lunar reflector experiment akashaheights@gmail.com - 2016-09-22 12:27 -0700
Re: MIT Lunar reflector experiment akashaheights@gmail.com - 2016-09-22 12:33 -0700
Re: MIT Lunar reflector experiment akashaheights@gmail.com - 2016-09-22 12:34 -0700
Re: MIT Lunar reflector experiment akashaheights@gmail.com - 2016-09-22 12:36 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-23 14:18 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-24 15:24 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-23 14:22 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-24 12:06 -0700
Re: MIT Lunar reflector experiment moroney@world.std.spaamtrap.com (Michael Moroney) - 2016-09-25 01:19 +0000
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-26 11:13 -0700
Re: MIT Lunar reflector experiment Gary Harnagel <hitlong@yahoo.com> - 2016-09-26 19:04 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-26 15:48 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-27 10:07 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-09-28 12:15 -0700
Re: MIT Lunar reflector experiment Jan2 - 2016-09-30 11:20 +0200
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-01 14:13 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-01 14:51 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-03 16:00 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-07 11:05 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-08 15:21 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-08 16:03 -0700
Re: MIT Lunar reflector experiment numbernumber1964@gmail.com - 2016-10-09 11:41 -0700
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| From | Sylvia Else <sylvia@not.at.this.address> |
|---|---|
| Date | 2016-09-11 22:32 +1000 |
| Message-ID | <e3l16oF3mm5U1@mid.individual.net> |
| In reply to | #391893 |
On 10/09/2016 3:03 AM, dlzc wrote: > Dear Michael Moroney: > > On Friday, September 9, 2016 at 6:54:25 AM UTC-7, Michael Moroney > wrote: ... >> Nope. The Hubble could not _image_ the reflector. It will be seen >> as a featureless point of light, just like the stars in the night >> sky, which are dozens or hundreds of light years distant but have a >> diameter only on the order of a million km. Obviously, if photons >> are reflected from the mirror and reach the Hubble, they will >> trigger the photosensors. > > Those mirrors are very special. They only reflect incident light > back *exactly* along the line the light came in from. So Hubble, > since it has no "flash attachment" would see only the equipment > package with incident solar radiation, nothing off the mirrors > proper. They're subject to the same limitations as other optical devices. For example, a 10cm retroreflector on the moon, even if it is optically perfect, will scatter the reflected photons over a circle of radius of around one kilometre back on the Earth. So one need only choose a point on Earth that at some moment will lie on the extended line between Hubble and the retroreflector, and some of the returning light will be intercepted by the telescope. Sylvia.
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-09 16:36 -0700 |
| Message-ID | <be47d5e1-0c8d-4c4b-91ec-fabedd06671f@googlegroups.com> |
| In reply to | #391847 |
Obviously, if photons are reflected from the mirror and reach the Hubble, they will trigger the photosensors. ----------------------------------------------- Not if the reflected ray is below the threshold intensity of a photomultipler.
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| From | Tom Roberts <tjroberts137@sbcglobal.net> |
|---|---|
| Date | 2016-09-09 20:20 -0500 |
| Message-ID | <jd2dnX-STPhZwk7KnZ2dnUU7_83NnZ2d@giganews.com> |
| In reply to | #391909 |
On 9/9/16 9/9/16 6:36 PM, numbernumber1964@gmail.com wrote: > Obviously, if photons are reflected from > the mirror and reach the Hubble, they will trigger the photosensors. But the LLR light never reaches Hubble. The geometry is completely wrong. > Not if the reflected ray is below the threshold intensity of a photomultipler. Photomultipliers count individual photons. There is no "threshold intensity", as long as there are some photons in the light ray (and if there aren't then it isn't a light ray). Tom Roberts
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-09 16:37 -0700 |
| Message-ID | <43e944c2-5459-4295-8c14-7daf521210d9@googlegroups.com> |
| In reply to | #391847 |
Those mirrors are very special. They only reflect incident light back *exactly* along the line the light came in from. _____________________________________________________ Maybe in your wet dreams.
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-09 16:40 -0700 |
| Message-ID | <c53e32b6-513a-44ad-8961-b455ef34bfa0@googlegroups.com> |
| In reply to | #391847 |
those mirrors are very special. They only reflect incident light back *exactly* along the line the light came in from. So Hubble, since it has no "flash >attachment" would see only the equipment package with incident solar radiation, nothing off the mirrors proper. ____________________________________ Interesting thanks. Makes sense. jaymo...@hotmail.com ______________________________________ Have you ever heard of dispersion or does SR eliminate that to?
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-09 16:43 -0700 |
| Message-ID | <2f231477-8e94-4051-ae95-d33a006bcae7@googlegroups.com> |
| In reply to | #391847 |
For most of the LLR facilities, that would be the case. However, the Apache Point observatory in New Mexico has exceptionally clear "seeing". That combined with the large 3.5 meter mirror means that it can typically capture a return photon or two with every pulse (depending on which retroreflector it aims at). _____________________________________________________________ Another nocturnal dreamer. A single photon (per second) is not going to set off the photomultiplier.
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| From | moroney@world.std.spaamtrap.com (Michael Moroney) |
|---|---|
| Date | 2016-09-10 02:38 +0000 |
| Message-ID | <nqvrnt$g0m$2@pcls7.std.com> |
| In reply to | #391912 |
numbernumber1964@gmail.com writes: >Another nocturnal dreamer. A single photon (per second) is not going to >set off the photomultiplier. Sure it can. With the old kind of photomultiplier, the photoelectric effect means one photon produces one electron. The "multiplier" part of the photomultiplier means that the electron cascades into a pulse of electrons over several steps.
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-09 19:46 -0700 |
| Message-ID | <ec6508ac-47a2-43e8-bde8-51cb29e9ac9c@googlegroups.com> |
| In reply to | #391847 |
>Those mirrors are very special. They only reflect incident light back >*exactly* along the line the light came in from. You are right, they are corner reflectors. Of course *exactly* depends on the preciseness of manufacture. For example, reflectors on cars and bicycles have little corner reflectors molded in plastic. They don't reflect exactly back which is fine since a driver's eyeballs aren't where the headlights are. __________________________________________________ Dispersion
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| From | Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> |
|---|---|
| Date | 2016-09-10 03:41 -0700 |
| Message-ID | <5260bd85-41f5-49c5-b6e7-3034f5d10f57@googlegroups.com> |
| In reply to | #391928 |
On Friday, September 9, 2016 at 9:46:44 PM UTC-5, numbernu...@gmail.com wrote: > >Those mirrors are very special. They only reflect incident light back > >*exactly* along the line the light came in from. > > You are right, they are corner reflectors. Of course *exactly* depends on > the preciseness of manufacture. For example, reflectors on cars and > bicycles have little corner reflectors molded in plastic. They don't > reflect exactly back which is fine since a driver's eyeballs aren't > where the headlights are. > > __________________________________________________ > > > Dispersion Wrong. Diffraction and inaccuracies of manufacture result in spread of the return beam. For auto reflectors, the inaccuracies of manufacture are intentional and carefully computed so that a headlight beam does not reflect directly back to the headlights, but shines a significant fraction of the light back to a driver's eyes. Diffraction depends on the size of the corner reflector. The reflectors set out by the Apollo astronauts and the Lunokhod rovers were as large as the available technology allowed back then. Next-generation corner reflectors will be considerably larger, so that a single reflector will do the work of a sheet of reflectors. A major source of inaccuracy in current measurements to the Moon comes from the large areas of the sheets of reflectors. Use of monolithic corner reflectors will allow future distance measurements to be better than 0.1 mm Other future possibilities include, not passive corner reflectors, but use of active transponders. This would enable each pulse to trigger the return of thousands of photons. Dispersion is only a factor with non-monochromatic light, and yes, it is true that you can see a bit of a rainbow effect in a bicycle reflector, but our concern here is with the lunar *laser* ranging experiment. Dispersion is insignificant using lasers.
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-09 19:52 -0700 |
| Message-ID | <ff4934a3-0a13-4a9e-8020-18a749a9447b@googlegroups.com> |
| In reply to | #391847 |
>Another nocturnal dreamer. A single photon (per second) is not going to >set off the photomultiplier. Sure it can. With the old kind of photomultiplier, the photoelectric effect means one photon produces one electron. The "multiplier" part of the photomultiplier means that the electron cascades into a pulse of electrons over several steps. Michael Moroney _________________________________________________________ Are you being seriously stupid or What! A photomultiplier is based on the photoelectric effect which is reliant on a threshold intensity which is the reason solar cell do not function at night unless of course you are stupid or having another nocturnal dream.
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| From | moroney@world.std.spaamtrap.com (Michael Moroney) |
|---|---|
| Date | 2016-09-10 14:48 +0000 |
| Message-ID | <nr16go$u0c$3@pcls7.std.com> |
| In reply to | #391929 |
numbernumber1964@gmail.com writes: >>Another nocturnal dreamer. A single photon (per second) is not going to >>set off the photomultiplier. >Sure it can. With the old kind of photomultiplier, the photoelectric >effect means one photon produces one electron. The "multiplier" part of >the photomultiplier means that the electron cascades into a pulse of >electrons over several steps. Michael Moroney >_________________________________________________________ >Are you being seriously stupid or What! A photomultiplier is based on the >photoelectric effect which is reliant on a threshold intensity which is >the reason solar cell do not function at night unless of course you are stupid or having another nocturnal dream. Wrong. Read Einstein's work on the photoelectric effect. He explicitly disproved of your threshold idea. A single photon (of sufficient energy) produces exactly one electron. The multiplier effect is that there is a positively charged plate in the photomultiplier tube where that electron, being accelerated, slams into a different type of substance which releases more electrons. There may be further stages of this. But the net result is a pulse of current (electrons) from a single photon. As to solar cells, I don't know the physics behind them, but I suspect that at the fundamental level it is still one photon == one electron of current. It may be that there are internal losses such that all current below a point gets lost internally. Or maybe not, solar cells do work via starlight but produce so little current it is not at all useful. I also don't know the physics of a CCD device in the Hubble imager.
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-10 14:35 -0700 |
| Message-ID | <f1be1994-88d6-49a5-a0a5-79e19f6b3e4a@googlegroups.com> |
| In reply to | #391847 |
Dispersion is insignificant using lasers.----------Prokaryotic _____________________________________________________________________ Using a 3mW laser beam, the initial diameter, of the beam, is 3mm. At a distance of 20 ft the diameter of the beam increases to 3.5 mm. At the surface of the moon the beam's width would be over 5,000 miles!
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| From | Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> |
|---|---|
| Date | 2016-09-10 20:48 -0700 |
| Message-ID | <d62d5ff5-0a36-426b-8956-527a78188bfd@googlegroups.com> |
| In reply to | #391980 |
On Saturday, September 10, 2016 at 4:35:03 PM UTC-5, numbernu...@gmail.com wrote: > Dispersion is insignificant using lasers.----------Prokaryotic > > _____________________________________________________________________ > > > > Using a 3mW laser beam, the initial diameter, of the beam, is 3mm. At a distance of 20 ft the diameter of the beam increases to 3.5 mm. At the surface of the moon the beam's width would be over 5,000 miles! That is DIFFRACTION, not DISPERSION. Two different terms, two different effects.
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| From | Tom Roberts <tjroberts137@sbcglobal.net> |
|---|---|
| Date | 2016-09-12 11:55 -0500 |
| Message-ID | <QIKdnXpbtteMQ0vKnZ2dnUU7_8xi4p2d@giganews.com> |
| In reply to | #391980 |
On 9/10/16 9/10/16 - 4:35 PM, numbernumber1964@gmail.com wrote: > Using a 3mW laser beam, the initial diameter, of the beam, is 3mm. At a > distance of 20 ft the diameter of the beam increases to 3.5 mm. At the > surface of the moon the beam's width would be over 5,000 miles! Why do you just make stuff up and pretend it is true? Your "numbers" are completely wrong. Tom Roberts
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-10 14:38 -0700 |
| Message-ID | <7910717d-6710-4edb-8ca8-23372e8ce600@googlegroups.com> |
| In reply to | #391847 |
Read Einstein's work on the photoelectric effect. He explicitly disproved of your threshold idea. A single photon (of sufficient energy) produces exactly one electron.---------Michael Moroney _________________________________________________________ Don't believe everything you read, ex Einstein. Also, a single electron cannot form a detectable current that is required in forming a signal.
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| From | Gary Harnagel <hitlong@yahoo.com> |
|---|---|
| Date | 2016-09-10 16:43 -0700 |
| Message-ID | <96bf8ab3-696d-4eaf-ace2-7e42d2fb9e7d@googlegroups.com> |
| In reply to | #391981 |
On Saturday, September 10, 2016 at 3:38:36 PM UTC-6, numbernu...@gmail.com wrote: > > Read Einstein's work on the photoelectric effect. He explicitly > disproved of your threshold idea. A single photon (of sufficient energy) > produces exactly one electron.---------Michael Moroney > > _________________________________________________________ > > > Don't believe everything you read, ex Einstein. The photoelectric effect is well-established, and Einstein just explained why the experimental results (which he did NOT perform) came out contrary to the way you falsely believe the effect works. > Also, a single electron cannot form a detectable current that is required > in forming a signal. I'm running a long-term experiment right now that uses a photomultiplier tube to detect very short light PULSES and I get nice pulses of electrons out of it. It works just fine, thank you. "The person who says it cannot be done should not interrupt the person doing it." --Chinese proverb Assertive people who don't know what they're talking about are trolls.
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| From | moroney@world.std.spaamtrap.com (Michael Moroney) |
|---|---|
| Date | 2016-09-11 00:05 +0000 |
| Message-ID | <nr273e$lup$2@pcls7.std.com> |
| In reply to | #391981 |
numbernumber1964@gmail.com writes: >Read Einstein's work on the photoelectric effect. He explicitly >disproved of your threshold idea. A single photon (of sufficient energy) >produces exactly one electron.---------Michael Moroney >_________________________________________________________ >Don't believe everything you read, ex Einstein. However, the photoelectric effect has been repeated over and over again so this is definitely a case where Einstein can be believed. > Also, a single electron >cannot form a detectable current that is required in forming a signal. But a photomultiplied electron can easily be detected as a signal. The lunar ranging people detect single photons all the time. Betcha it starts out as a single electron.
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| From | numbernumber1964@gmail.com |
|---|---|
| Date | 2016-09-10 17:41 -0700 |
| Message-ID | <34f76539-012a-42ca-af81-bd65cc8b8537@googlegroups.com> |
| In reply to | #391847 |
It is not possible to detect a single photon because of the threshold intensity that is required in the production of the photoelectric effect. There are thousand of books regarding the photoelectric effect that describes a threshold intensity. The lunar lander experiment is a hoax since for the Hubble telescope to recognize an object requires an object of 200 meter in diameter and the MIT lunar lander reflector has a surface area of 1 m squared.
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| From | Gary Harnagel <hitlong@yahoo.com> |
|---|---|
| Date | 2016-09-10 19:08 -0700 |
| Message-ID | <8fa411f8-e9ec-4e40-a03d-3b98222c0901@googlegroups.com> |
| In reply to | #392002 |
On Saturday, September 10, 2016 at 6:41:33 PM UTC-6, numbernu...@gmail.com wrote: > > It is not possible to detect a single photon because of the threshold > intensity that is required in the production of the photoelectric effect. Repeating stupidity doesn't make you smart. > There are thousand of books regarding the photoelectric effect that > describes a threshold intensity. And lying doesn't do anything except proving your dishonesty. Of course, if you REALLY believed your blather, then you would be an ignoramus. Take your pick. > The lunar lander experiment is a hoax since for the Hubble telescope to > recognize an object requires an object of 200 meter in diameter and the > MIT lunar lander reflector has a surface area of 1 m squared. Repeating bullshit doesn't improve its smell.
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| From | Prokaryotic Caspase Homolog <prokaryotic.caspase.homolog@gmail.com> |
|---|---|
| Date | 2016-09-10 20:56 -0700 |
| Message-ID | <7a097374-3c85-4c34-b8a0-6c52ab27aac8@googlegroups.com> |
| In reply to | #392002 |
On Saturday, September 10, 2016 at 7:41:33 PM UTC-5, numbernu...@gmail.com wrote: > It is not possible to detect a single photon because of the threshold intensity that is required in the production of the photoelectric effect. There are thousand of books regarding the photoelectric effect that describes a threshold intensity. The lunar lander experiment is a hoax since for the Hubble telescope to recognize an object requires an object of 200 meter in diameter and the MIT lunar lander reflector has a surface area of 1 m squared. You are confused about the photoelectric effect. There is no threshold INTENSITY. There *IS* a threshold FREQUENCY, or energy per photon. A photon must have a certain minimum energy before it is capable of knocking an electron out of its orbit around an atom. All it takes is ONE photon of sufficient energy. However, the intensity of the return beam can be arbitrarily low, meaning that there is no lower limit to the number of return photons per second, minute, or hour. A single photon of sufficient energy is all that it takes.
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