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Bose-Einstein condensation of photons in a microscopic optical resonator: towards photonic lattices and coupled cavities

机译:微观光学谐振器中的光子的Bose-Einstein光子:朝向光子晶格和耦合腔

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Bose-Einstein condensation has in the last two decades been observed in cold atomic gases and in solid-state physics quasiparticles, exciton-polaritons and magnons, respectively. The perhaps most widely known example of a bosonic gas, photons in blackbody radiation, however exhibits no Bose-Einstein condensation, because the particle number is not conserved and at low temperatures the photons disappear in the system's walls instead of massively occupying the cavity ground mode. This is not the case in a small optical cavity, with a low-frequency cutoff imprinting a spectrum of photon energies restricted to values well above the thermal energy. The here reported experiments are based on a microscopic optical cavity filled with dye solution at room temperature. Recent experiments of our group observing Bose-Einstein condensation of photons in such a setup are described. Moreover, we discuss some possible applications of photon condensates to realize quantum manybody states in periodic photonic lattices and photonic Josephson devices.
机译:Bose-Einstein冷凝在过去二十年中,在冷原子气体和固态物理Quasiply,Exciton-Polaritonon和Magnons中分别观察到。可能最广泛的挥霍气体的示例,黑体辐射中的光子,但没有表现出Bose-Einstein冷凝,因为粒子数不保守并且在低温下,光子在系统的壁中消失,而不是大量占用腔地模式。这不是小光腔中的情况,具有限制在热能高于高于热能的值的光子能量的低频截止。这里报道的实验基于在室温下填充有染料溶液的微观光学腔。描述了我们对这种设定中的光子的观察Bose-Einstein凝聚的近期的实验。此外,我们讨论了光子凝结物的一些可能的应用,以在周期性光子晶格和光子约瑟夫森设备中实现量子的许多声音。

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