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Towards R-space Bose-Einstein Condensation of Photonic CrystalExciton Polaritons

机译:朝向R-Space Bose-Einstein光子晶体缩合光子晶体蛋白胶质酶

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Coupled states of semiconductor quantum well (QW) excitons and photons in a two dimensional (2D) periodic lattice of microcavities are analyzed theoretically, revealing allowed bands and forbidden gaps in the energy spectrum of exciton polaritons. Photonic crystal exciton polaritons have spatially uniform excitonic constituent set by flat QWs, but exhibit periodic Bloch oscillations in the plane of QWs due to their photonic component. The envelope functions of photonic crystal exciton polaritons can be tailored via effective potential of a photonic crystal heterostructure, by using quasi-periodic lattices of microcavities. Confined envelope function states of lower and upper polaritons and the Bose-Einstein condensation of lower polaritons are analyzed here in a photonic crystal heterostructure trap with harmonic oscillator potential. This concept is numerically illustrated on example of CdTe/CdMgTe microcavities.
机译:在理论上分析了半导体量子阱(QW)激子和光子中的半导体阱(QW)激子和光子的微腔,揭示了激子极性恒子的能谱中的允许条带和禁止的间隙。光子晶体激子极性恒星具有扁平QWS设定的空间均匀的激子成分,但由于它们的光子成分,在QWS的平面中展示了周期性的Bloch振荡。光子晶体激子极性恒星的包络功能可以通过光子晶体异质结构的有效电位来定制,通过使用对微腔的准周期性的晶格来定制。在具有谐振子振荡器电位的光子晶体异质结构阱中,在具有谐振振荡势势的光子晶体异质结构阱中分析了下部和上极性官和下极性官的狭窄的封闭功能状态。在CDTE / CDMGTE微腔的示例上以数值示出该概念。

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