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Journal ArticleDOI

Plancks Gesetz und Lichtquantenhypothese

Bose
- 01 Dec 1924 - 
- Vol. 26, Iss: 1, pp 178-181
TLDR
In this article, the authors describe how the Phasenraum eines Lichtquants in bezug auf ein gegebenes Volumen wird in „Zellen“ von der Grose h3 aufgeteilt, i.e., the Zahl der moglichen Verteilungen der Lichtquanten einer makroskopisch definierten Strahlung unter diese Zellen liefert die Entropie.
Abstract
Der Phasenraum eines Lichtquants in bezug auf ein gegebenes Volumen wird in „Zellen“ von der Grose h3 aufgeteilt. Die Zahl der moglichen Verteilungen der Lichtquanten einer makroskopisch definierten Strahlung unter diese Zellen liefert die Entropie und damit alle thermodynamischen Eigenschaften der Strahlung.

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Citations
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Strong light–matter coupling and exciton-polariton condensation in lattices of plasmonic nanoparticles [Invited]

TL;DR: In this article, the authors describe how SLRs are formed in arrays of plasmonic nanoparticles, introduce different materials used for strong coupling with SLRs, and discuss some experiments that demonstrate the nonlinear emission of strongly coupled organic molecules with surface lattice resonances.
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Superfluidity and Superconductivity in Neutron Stars

TL;DR: In this paper, the occurrence of superfluidity and superconductivity in neutron stars is reviewed, and a detailed review of the properties of neutron stars with respect to these properties is presented.
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Pseudogap phenomena in ultracold atomic Fermi gases

TL;DR: In this paper, the authors review the progress in the study of pseudogap phenomena in atomic Fermi gases in terms of both theoretical understanding and experimental observations and show that there is strong, unambiguous evidence for the existence of a pseudoogap in strongly interacting Fermis gases.
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On the condensation of polaritons

TL;DR: In this paper, the experimental observation of macroscopically occupied polariton states and their possible attribution to a Bose-Einstein condensates (BECs) were discussed.
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Entanglement and localization of a two-mode Bose–Einstein condensate

TL;DR: In this article, a simple second quantization model is used to describe a two-mode Bose-Einstein condensate (BEC), which can be written in terms of the generators of a SU (2) algebra with three parameters.
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