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Sagnac interferometry with coherent vortex superposition states in exciton-polariton condensates

机译:Sagnac干涉法在激子-极化子凝聚物中具有相干涡旋叠加态

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We investigate prospects of using counter-rotating vortex superposition states in nonequilibrium exciton-polariton Bose-Einstein condensates for the purposes of Sagnac interferometry. We first investigate the stability of vortex-antivortex superposition states, and show that they survive at steady state in a variety of configurations. Counter-rotating vortex superpositions are of potential interest to gyroscope and seismometer applications for detecting rotations. Methods of improving the sensitivity are investigated by targeting high momentum states via metastable condensation, and the application of periodic lattices. The sensitivity of the polariton gyroscope is compared to its optical and atomic counterparts. Due to the large interferometer areas in optical systems and small de Broglie wavelengths for atomic BECs, the sensitivity per detected photon is found to be considerably less for the polariton gyroscope than with competing methods. However, polariton gyroscopes have an advantage over atomic BECs in a high signal-to-noise ratio, and have other practical advantages such as room-temperature operation, area independence, and robust design. We estimate that the final sensitivities including signal-to-noise aspects are competitive with existing methods.
机译:我们研究了在非平衡激子-极化子玻色-爱因斯坦凝聚物中使用反向旋转涡旋叠加态的前景,以进行Sagnac干涉测量。我们首先研究了涡旋-反涡旋叠加态的稳定性,并表明它们在各种配置下均能在稳态下生存。反向旋转涡旋叠加对于陀螺仪和地震仪应用中检测旋转可能具有潜在的意义。研究了通过亚稳态凝结瞄准高动量态以及应用周期性晶格来提高灵敏度的方法。将极化子陀螺仪的灵敏度与其光学和原子陀螺仪进行比较。由于光学系统中的干涉仪面积较大,而原子BEC的de Broglie波长较小,因此发现极化偏振陀螺仪的每个检测到的光子灵敏度要比竞争方法低得多。但是,极化子陀螺仪在高信噪比方面比原子BEC具有优势,并且还具有其他实用优势,例如室温操作,区域独立性和坚固的设计。我们估计最终的灵敏度(包括信噪比)与现有方法相比具有竞争力。

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