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Improving dark matter searches with neutrino telescopes

Started bySam Wormley <swormley1@gmail.com>
First post2016-01-22 10:20 -0600
Last post2016-01-22 12:15 -0800
Articles 4 — 3 participants

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  Improving dark matter searches with neutrino telescopes Sam Wormley <swormley1@gmail.com> - 2016-01-22 10:20 -0600
    Re: Improving dark matter searches with neutrino telescopes jimp@specsol.spam.sux.com - 2016-01-22 18:47 +0000
      Re: Improving dark matter searches with neutrino telescopes Sam Wormley <swormley1@gmail.com> - 2016-01-23 10:30 -0600
    Re: Improving dark matter searches with neutrino telescopes "reber g=emc^2" <herbertglazier0@gmail.com> - 2016-01-22 12:15 -0800

#547204 — Improving dark matter searches with neutrino telescopes

FromSam Wormley <swormley1@gmail.com>
Date2016-01-22 10:20 -0600
SubjectImproving dark matter searches with neutrino telescopes
Message-ID<nc-dnatE5pR4yz_LnZ2dnUU7-VmdnZ2d@giganews.com>
Improving dark matter searches with neutrino telescopes
> http://icecube.wisc.edu/icecube/news/img/news_attachment.file.92bc2dcc1c9385f5.494337395f736f6c61725f77696d705f666967757265362e6a7067.jpg
> http://icecube.wisc.edu/news/view/389


> In 2013, the IceCube Collaboration published the world’s best limits
> on the spin-dependent cross section for weakly interacting dark
> matter particles. They were derived from the non-observation of
> annihilation into neutrinos of dark matter gravitationally trapped by
> the Sun.
>
> Now, the collaboration presents a new likelihood formalism that
> allows easy integration of any neutrino telescope data into analyses
> of dark matter theories. In a re-analysis of the 79-string IceCube
> data, IceCube sets stronger spin-dependent limits and also rules out
> a number of supersymmetric dark matter models. These results have
> just been submitted to the Journal of Cosmology and Astroparticle
> Physics and are accompanied by the release of the associated IceCube
> data and code, which allows application of the new likelihood
> formalism to arbitrary dark matter models.



-- 

sci.physics is an unmoderated newsgroup dedicated
to the discussion of physics, news from the physics
community, and physics-related social issues.

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#547258

Fromjimp@specsol.spam.sux.com
Date2016-01-22 18:47 +0000
Message-ID<d3aanc-9ss.ln1@mail.specsol.com>
In reply to#547204
Sam Wormley <swormley1@gmail.com> wrote:
> Improving dark matter searches with neutrino telescopes

Maybe you could use a neutrino telescope to improve your search for
the meaning of copyright.


-- 
Jim Pennino

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#547520

FromSam Wormley <swormley1@gmail.com>
Date2016-01-23 10:30 -0600
Message-ID<VIadnd78q_wQNz7LnZ2dnUU7-QednZ2d@giganews.com>
In reply to#547258
On 1/22/16 12:47 PM, jimp@specsol.spam.sux.com wrote:
> Maybe you could use a neutrino telescope to improve your search for
> the meaning of copyright.
>


   Now, now, jimp, you're obsessive nature is outta control, and your
   absolute contempt and total disgust are addressed in these Anger
   Management classes. You, jimp, need these services:
 > http://yellowpages.com/rancho-cucamonga-ca/anger-management-classes


Improving dark matter searches with neutrino telescopes
> http://icecube.wisc.edu/icecube/news/img/news_attachment.file.92bc2dcc1c9385f5.494337395f736f6c61725f77696d705f666967757265362e6a7067.jpg
 > http://icecube.wisc.edu/news/view/389

 > In 2013, the IceCube Collaboration published the world’s best limits
 > on the spin-dependent cross section for weakly interacting dark
 > matter particles. They were derived from the non-observation of
 > annihilation into neutrinos of dark matter gravitationally trapped by
 > the Sun.
 >
 > Now, the collaboration presents a new likelihood formalism that
 > allows easy integration of any neutrino telescope data into analyses
 > of dark matter theories. In a re-analysis of the 79-string IceCube
 > data, IceCube sets stronger spin-dependent limits and also rules out
 > a number of supersymmetric dark matter models. These results have
 > just been submitted to the Journal of Cosmology and Astroparticle
 > Physics and are accompanied by the release of the associated IceCube
 > data and code, which allows application of the new likelihood
 > formalism to arbitrary dark matter models.


-- 

sci.physics is an unmoderated newsgroup dedicated
to the discussion of physics, news from the physics
community, and physics-related social issues.

[toc] | [prev] | [next] | [standalone]


#547289

From"reber g=emc^2" <herbertglazier0@gmail.com>
Date2016-01-22 12:15 -0800
Message-ID<fca2c535-f2b1-47b9-b4ae-dd14d1c68dcf@googlegroups.com>
In reply to#547204
On Friday, January 22, 2016 at 8:20:56 AM UTC-8, Sam Wormley wrote:
> Improving dark matter searches with neutrino telescopes
> > http://icecube.wisc.edu/icecube/news/img/news_attachment.file.92bc2dcc1c9385f5.494337395f736f6c61725f77696d705f666967757265362e6a7067.jpg
> > http://icecube.wisc.edu/news/view/389
> 
> 
> > In 2013, the IceCube Collaboration published the world's best limits
> > on the spin-dependent cross section for weakly interacting dark
> > matter particles. They were derived from the non-observation of
> > annihilation into neutrinos of dark matter gravitationally trapped by
> > the Sun.
> >
> > Now, the collaboration presents a new likelihood formalism that
> > allows easy integration of any neutrino telescope data into analyses
> > of dark matter theories. In a re-analysis of the 79-string IceCube
> > data, IceCube sets stronger spin-dependent limits and also rules out
> > a number of supersymmetric dark matter models. These results have
> > just been submitted to the Journal of Cosmology and Astroparticle
> > Physics and are accompanied by the release of the associated IceCube
> > data and code, which allows application of the new likelihood
> > formalism to arbitrary dark matter models.
> 
> 
> 
> -- 
> 
> sci.physics is an unmoderated newsgroup dedicated
> to the discussion of physics, news from the physics
> community, and physics-related social issues.

What does a neutrino telly look like? Is telly the right word? TreBert

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