激子
凝聚态物理
物理
比克西顿
自旋(空气动力学)
玻色-爱因斯坦凝聚体
磁场
蓝移
量子阱
自旋转向
激发
原子物理学
光致发光
量子力学
散射
光学
热力学
激光器
作者
Subhradeep Misra,Michael Stern,V. Umansky,I. Bar‐Joseph
标识
DOI:10.1073/pnas.2203531119
摘要
We show that a Bose-Einstein condensate consisting of dark excitons forms in GaAs coupled quantum wells at low temperatures. We find that the condensate extends over hundreds of micrometers, well beyond the optical excitation region, and is limited only by the boundaries of the mesa. We show that the condensate density is determined by spin-flipping collisions among the excitons, which convert dark excitons into bright ones. The suppression of this process at low temperature yields a density buildup, manifested as a temperature-dependent blueshift of the exciton emission line. Measurements under an in-plane magnetic field allow us to preferentially modify the bright exciton density and determine their role in the system dynamics. We find that their interaction with the condensate leads to its depletion. We present a simple rate-equations model, which well reproduces the observed temperature, power, and magnetic-field dependence of the exciton density.
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