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Electron spin polarization and detection in InAs quantum dots through p-shell trions

机译:电子自旋极化和InAs量子点中通过p壳三极子的检测

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摘要

We perform two-color time-resolved spectroscopy of spin dynamics in an ensemble of InAs quantum dots, demonstrating that an electron spin polarization in negatively charged quantum dots can be efficiently generated or detected with pulses tuned to p-shell trions. Due to the polarization selection rules and exchange splitting of the electron spin triplet and singlet trion states, the absorption probability of circularly polarized light depends strongly on the spin state of the resident electron in the quantum dot. This leads to spin selective excitation of electrons to the p-shell trion states, generating a spin polarization in the ensemble of unexcited resident electrons. Manipulating spin states through the excited trion states allows for separation of the excitation wavelength from the emission wavelength for control of the spatial extent of the excited-state wave function.
机译:我们在InAs量子点的整体中执行自旋动力学的双色时间分辨光谱,证明可以通过调谐到p壳三极子的脉冲有效地产生或检测带负电的量子点中的电子自旋极化。由于极化选择规则以及电子自旋三重态和单重态三重态的交换分裂,圆偏振光的吸收概率强烈取决于量子点中驻留电子的自旋态。这导致电子自旋选择性激发到p壳三元态,从而在未激发的驻留电子集合中产生自旋极化。通过激发的Trion态操纵自旋态可将激发波长与发射波长分开,以控制激发态波函数的空间范围。

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