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| Started by | jimp@specsol.spam.sux.com |
|---|---|
| First post | 2015-11-10 22:12 +0000 |
| Last post | 2015-11-10 22:12 +0000 |
| Articles | 1 — 1 participant |
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Re: Researchers find electron chirality in graphene impacts current flow jimp@specsol.spam.sux.com - 2015-11-10 22:12 +0000
| From | jimp@specsol.spam.sux.com |
|---|---|
| Date | 2015-11-10 22:12 +0000 |
| Subject | Re: Researchers find electron chirality in graphene impacts current flow |
| Message-ID | <3o6ahc-pff.ln1@mail.specsol.com> |
Sam Wormley <swormley1@gmail.com> wrote: > Researchers find electron chirality in graphene impacts current flow >> http://phys.org/news/2015-10-electron-chirality-graphene-impacts-current.html > > >> (Phys.org)?A team of researches affiliated with several institutions >> in the U.K. and Russia has found that chirality in graphene impacts >> current flow. In their paper published in the journal Nature Physics, >> the team describes how they developed a method for both detecting and >> measuring the impact of chirality in graphene and why they believe it >> could lead to better tunneling electronics devices. >> >> Electrons and other particles have a property that is called >> chirality, where they exist as being either left or right-handed. In >> addition, when they exist in an electronic state, it can also be >> defined as chiral. In this new experiment, the researchers found that >> the chirality of electrons can have an impact on current flow?they >> made this discovery by creating a small testing material made of a >> sheet of four atom thick boron nitride placed between two sheets of >> graphene. This setup allowed for creating a very controllable type of >> current flow?when voltage was applied to one of the sheets of >> graphene, it tunneled its way through the boron nitride to the other >> graphene sheet where it could be removed. That allowed for noting the >> right or left-handedness of the electrons as they tunneled through >> the borone nitride sheet and the states they ended up in. The >> researchers note that right-handed electrons tended to prefer to make >> it to right-hand states and vice-versa for the left-handed >> electrons. Yet another cut and paste that generated no interest. -- Jim Pennino
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