论文标题

通过光谱过滤器控制不连贯的两级系统的纯度,无法区分性和量子收率

Controlling Purity, Indistinguishability and Quantum Yield of Incoherently Pumped Two-Level System by Spectral Filters

论文作者

Panyukov, Ivan V., Shishkov, Vladislav Yu., Andrianov, Evgeny S.

论文摘要

开发过程显着影响确定性单光子源的性能。 Dephasing扩大光谱线并抑制发射光子的不可区分性,这对于许多应用是不希望的,主要用于量子计算。我们考虑在存在光谱滤波器的情况下由两级系统发出的光线。光谱过滤器允许控制二阶自相关功能,无法区分性和量子收率。我们表明,狭窄的光谱过滤器可以在破坏量子产量的同时增加发射光的无法区分性。光谱滤波器对二阶相关函数的影响取决于泵的持续时间。与两级系统的寿命相比,泵浦脉冲长时间时,狭窄的光谱过滤器会导致二阶自相关函数迅速增加。在此限制下,来自两级系统的光的统计数据继承了不一致的泵的统计数据。在泵脉冲的持续时间短的情况下,可以在一定程度上保留光谱滤波器的亚寿命宽度。此外,当使用单光子源发出的光用于控制量子系统时,例如,腔,根据量子系统的响应时间,光的单光子特性本身会有所不同。特别是,在较长响应时间的情况下,具有子寿命宽度的光谱滤波器可以提供接近零的二阶自相关函数。

Dephasing processes significantly impact the performance of deterministic single-photon sources. Dephasing broadens the spectral line and suppresses the indistinguishability of the emitted photons, which is undesirable for many applications, primarily for quantum computing. We consider a light emitted by a two-level system with a pulsed incoherent pump in the presence of the spectral filter. The spectral filter allows control of the second-order autocorrelation function, indistinguishability, and quantum yield. We show that narrow spectral filters can increase the indistinguishability of the emitted light while undermining the quantum yield. The influence of the spectral filter on the second-order correlation function depends on the duration of the pump. When the pumping pulse is long compared to the lifetime of the two-level system, the narrow spectral filters lead to a rapid increase in the second-order autocorrelation function. In this limit, the statistics of the light from the two-level system inherit the statistics of the incoherent pump. In the case of the short duration of the pump pulse, it is possible to preserve single-photon properties to some degree for the sub-lifetime width of the spectral filter. Moreover, when the light emitted by the single-photon source is used to control a quantum system, e.g., cavity, the single-photon properties of the light manifest themselves differently, depending on the response time of the quantum system. In particular, in the case of long response time, the spectral filter with sub-lifetime width can provide the near-zero second-order autocorrelation function.

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