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HOMOGENEOUS LINEWIDTH OF BOUND EXCITONS IN HIGH-PURITY GAAS MEASURED BY SPECTRAL HOLE BURNING

机译:光谱孔燃烧测量高纯气体中束缚激子的均匀线宽

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We measured spectral hole burning in an optical-absorption spectrum of a bound exciton (D-0,X) in high-purity GaAs at 1.8 K. Precise temperature-controlled semiconductor lasers with a lasing wavelength accuracy of less than 0.001 nm are used as wavelength-tunable pump-and-probe light sources in the hole-burning experiments. The homogeneous linewidth of the bound exciton is determined from the burned hole spectral width. The dipole dephasing time T-2 estimated from the measured half width of the burned hole is 300 ps, which is more than an order of magnitude longer than the T-2 value reported for two-dimensional excitons in a GaAs quantum well. Such a long value of T-2 for bound excitons is due to exciton localization or, more specifically, the reduction in the optical-dipole scattering rate is due to zero-dimensional exciton confinement. [References: 14]
机译:我们在1.8 K的高纯度GaAs中测量了束缚激子(D-0,X)的光吸收光谱中的光谱孔燃烧。使用精确的温度控制半导体激光器,其激光波长精度小于0.001 nm。烧孔实验中的波长可调泵浦和探针光源。结合的激子的均匀线宽由烧孔光谱宽度确定。根据测得的烧孔半宽度测得的偶极移相时间T-2为300 ps,比GaAs量子阱中二维激子所报告的T-2值长一个数量级。对于结合的激子,T-2如此之长的值是由于激子的局限性,或者更具体地说,光学偶极子散射速率的降低是由于零维激子的限制。 [参考:14]

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