Long-lived dark coherence brought to light by magnetic-field controlled photon echo

I. A. Solovev, I. I. Yanibekov, Y. Efimov, S. A. Eliseev, V. A. Lovcjus, I. Yugova, S. Poltavtsev, Y. Kapitonov
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引用次数: 2

Abstract

Larmor precession of the quasiparticle spin about a transverse magnetic field leads to the oscillations in the spontaneous photon echo signal due to the shuffling of the optical coherence between optically accessible (bright) and inaccessible (dark) states. Here we report on a new non-oscillating photon echo regime observed in the presence of non-equal dephasing rates of bright and dark states. This regime enables the observation of the long-living dark optical coherence. As a simple mechanical analogy, we suggest a charged particle moving in the magnetic field through the medium with anisotropic viscous friction. We demonstrate the dark coherence retrieval in the spontaneous photon echo from excitons in the InGaAs/GaAs quantum well.
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磁场控制光子回波带来的长寿命暗相干
准粒子自旋沿横向磁场的拉莫尔进动导致自发光子回波信号的振荡,这是由于光学相干性在光学可达(亮)态和不可达(暗)态之间的变换。在这里,我们报告了一种新的非振荡光子回波制度,观察到在存在非相等的光和暗状态的减相率。这种状态使得观测长寿命的暗光学相干成为可能。作为一个简单的力学类比,我们提出一个带电粒子在磁场中通过具有各向异性粘性摩擦的介质运动。研究了InGaAs/GaAs量子阱中激子自发光子回波的暗相干恢复。
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