Singmaster's conjecture: Difference between revisions

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{{Unreferenced|date=December 2009}}
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In [[superconductivity]], the '''Josephson phase''' is the difference of the [[phase (waves)|phase]]s of the [[quantum mechanical]] [[wave function]] in two superconducting electrodes forming a [[Josephson junction]].
 
For example, if the macroscopic wave functions <math>\Psi_1</math> and <math>\Psi_2</math> in superconductors 1 and 2 are given by
 
<math>\Psi_1 = \sqrt{n_s} e^{i\theta_1}</math><br />
<math>\Psi_2 = \sqrt{n_s} e^{i\theta_2}</math>
 
then the Josephson phase is <math>\phi\ \stackrel{\mathrm{def}}{=}\ \theta_2-\theta_1</math>.
 
{{DEFAULTSORT:Josephson Phase}}
[[Category:Superconductivity]]
[[Category:Josephson effect]]

Revision as of 17:15, 11 February 2014

Hello. Allow me introduce the writer. Her title is Refugia Shryock. He is really fond of doing ceramics but he is having difficulties to find time for it. Bookkeeping is my profession. Puerto Rico is where he and his wife live.

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