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双色激发下量子发射体中的相干动力学

Coherent Dynamics in Quantum Emitters under Dichromatic Excitation.

作者信息

Koong Z X, Scerri E, Rambach M, Cygorek M, Brotons-Gisbert M, Picard R, Ma Y, Park S I, Song J D, Gauger E M, Gerardot B D

机构信息

SUPA, Institute of Photonics and Quantum Sciences, Heriot-Watt University, Edinburgh EH14 4AS, United Kingdom.

College of Optoelectronic Engineering, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.

出版信息

Phys Rev Lett. 2021 Jan 29;126(4):047403. doi: 10.1103/PhysRevLett.126.047403.

Abstract

We characterize the coherent dynamics of a two-level quantum emitter driven by a pair of symmetrically detuned phase-locked pulses. The promise of dichromatic excitation is to spectrally isolate the excitation laser from the quantum emission, enabling background-free photon extraction from the emitter. While excitation is not possible without spectral overlap between the exciting pulse and the quantum emitter transition for ideal two-level systems due to cancellation of the accumulated pulse area, we find that any additional interactions that interfere with cancellation of the accumulated pulse area may lead to a finite stationary population inversion. Our spectroscopic results of a solid-state two-level system show that, while coupling to lattice vibrations helps to improve the inversion efficiency up to 50% under symmetric driving, coherent population control and a larger amount of inversion are possible using asymmetric dichromatic excitation, which we achieve by adjusting the ratio of the intensities between the red- and blue-detuned pulses. Our measured results, supported by simulations using a real-time path-integral method, offer a new perspective toward realizing efficient, background-free photon generation and extraction.

摘要

我们描述了由一对对称失谐的锁相脉冲驱动的两能级量子发射器的相干动力学。双色激发的前景是从量子发射中光谱隔离激发激光,从而实现从发射器中无背景光子提取。对于理想的两能级系统,由于累积脉冲面积的抵消,在没有激发脉冲与量子发射器跃迁之间的光谱重叠的情况下激发是不可能的,但我们发现任何干扰累积脉冲面积抵消的额外相互作用都可能导致有限的稳态粒子数反转。我们对固态两能级系统的光谱结果表明,虽然在对称驱动下与晶格振动的耦合有助于将反转效率提高到50%,但使用不对称双色激发可以实现相干粒子数控制和更大程度的反转,我们通过调整红失谐和蓝失谐脉冲之间的强度比来实现这一点。我们的测量结果得到了使用实时路径积分方法的模拟的支持,为实现高效、无背景光子产生和提取提供了新的视角。

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