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首页> 外文期刊>Physical review letters >Optical Amplification Using Raman Transitions between Spin-Singlet and Spin-Triplet States of a Pair of Coupled In-GaAs Quantum Dots
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Optical Amplification Using Raman Transitions between Spin-Singlet and Spin-Triplet States of a Pair of Coupled In-GaAs Quantum Dots

机译:使用一对In-GaAs耦合量子点的自旋-单态和自旋三重态之间的拉曼跃迁进行光放大

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We report the observation of steady-state optical amplification in Raman transitions between the lowest-energy spin states of a single quantum-dot molecule. Absorption and resonance fluorescence experiments demonstrate that the entangled two-electron singlet and triplet states have electric-dipole coupling to a common optically excited state. Fast spin relaxation ensures optical gain on the triplet transition when the singlet transition is driven resonantly. By embedding the quantum-dot molecule in a cavity of modest quality factor, a solid-state single-emitter laser can be realized.
机译:我们报告了在单个量子点分子的最低能量自旋态之间的拉曼跃迁中的稳态光学放大的观察结果。吸收和共振荧光实验表明,纠缠的两电子单重态和三重态具有电偶极耦合到共同的光激发态。当单重态跃迁受到共振驱动时,快速自旋弛豫可确保三重态跃迁上的光学增益。通过将量子点分子嵌入适度品质因数的腔中,可以实现固态单发射激光器。

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