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首页> 外文期刊>The Journal of Chemical Physics >Exploring two-dimensional electron gases with two-dimensional Fourier transform spectroscopy
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Exploring two-dimensional electron gases with two-dimensional Fourier transform spectroscopy

机译:用二维傅立叶变换光谱研究二维电子气

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The dephasing of the Fermi edge singularity excitations in two modulation doped single quantum wells of 12 nm and 18 nm thickness and in-well carrier concentration of ~4 × 10~(11) cm~(?2) was carefully measured using spectrally resolved four-wave mixing (FWM) and two-dimensional Fourier transform (2DFT) spectroscopy. Although the absorption at the Fermi edge is broad at this doping level, the spectrally resolved FWM shows narrow resonances. Two peaks are observed separated by the heavy hole/light hole energy splitting. Temperature dependent “rephasing” (S_1) 2DFT spectra show a rapid linear increase of the homogeneous linewidth with temperature. The dephasing rate increases faster with temperature in the narrower 12 nm quantum well, likely due to an increased carrier-phonon scattering rate. The S_1 2DFT spectra were measured using co-linear, cross-linear, and co-circular polarizations. Distinct 2DFT lineshapes were observed for co-linear and cross-linear polarizations, suggesting the existence of polarization dependent contributions. The “two-quantum coherence” (S_3) 2DFT spectra for the 12 nm quantum well show a single peak for both co-linear and co-circular polarizations.
机译:使用光谱解析的四点方法仔细测量了两个12 nm和18 nm厚度的调制掺杂单量子阱和〜4×10〜(11)cm〜(?2)的阱中载流子浓度的费米边缘奇异激发的相移。波混合(FWM)和二维傅里叶变换(2DFT)光谱。尽管在此掺杂水平上费米边缘处的吸收很宽,但光谱分辨的FWM表现出窄的谐振。观察到两个峰被重空穴/轻空穴能量分裂隔开。与温度相关的“重定相”(S_1)2DFT光谱显示均匀线宽随温度快速线性增加。在较窄的12 nm量子阱中,相移速率随温度的升高而加快,这可能是由于载流子-声子散射速率的提高。使用共线性,交叉线性和同圆偏振测量了S_1 2DFT光谱。共线和交叉线极化观察到不同的2DFT线形,表明存在极化相关的贡献。 12 nm量子阱的“双量子相干”(S_3)2DFT光谱显示出共线和共圆极化的单个峰。

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