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Simulating single-photon-single-atom absorption experiments with an optical resonator

机译:用光学谐振器模拟单光子单原子吸收实验

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The absorption of a single photon by a single two-level system (TLS) in free space is a fundamental physical process. In this contribution, we present the experimental realization of a model system to simulate the dynamics of such an absorption experiment: Comparing the absorption process of a single photon by a single TLS and the incoupling dynamics of an optical resonator, one finds an analogy between the energy stored inside the resonator and the probability of the photon to be absorbed by the TLS [1]. Both systems, resonators and TLS, respond in an equivalent way to the temporal profile of the incident light pulse. The energy storage in a resonator as well as the absorption of a single photon by a TLS can reach an unit efficiency under idealized conditions. Such an optimized process is achieved by an exponentially rising incident light field with a time constant which matches the lifetime of the system [2]. For such a perfect coupling, the end mirror of the resonator needs to have a reflectivity of unity. This corresponds to the excitation of a TLS from the complete solid angle. For a smaller reflectivity of the end mirror, the cavity simulates the absorption dynamics in the case of excitation from only a part of the solid angle. However, using real mirrors, a good analogy with excitation from a large solid angle can still be obtained by using a strongly asymmetric resonator, i.e. an incoupling mirror which has a significantly lower reflectivity than the end mirror of the cavity.
机译:在自由空间中单个两级系统(TLS)通过单个两级系统(TLS)的吸收是基本物理过程。在这一贡献中,我们介绍了模型系统的实验系统来模拟这种吸收实验的动态:通过单个TLS和光学谐振器的输给动态进行比较单个光子的吸收过程,其中一个是一个类比存储在谐振器内的能量和光子被TLS吸收的概率[1]。系统,谐振器和TLS都以等效方式响应入射光脉冲的时间轮廓。谐振器中的能量存储以及通过TLS的单个光子的吸收可以在理想条件下达到单位效率。这种优化过程是通过一个指数上升的入射光场来实现,其具有与系统的寿命匹配的时间常数[2]。对于这种完美的耦合,谐振器的端镜需要具有统一的反射率。这对应于来自完全实心角的TL的激发。对于末端镜的较小反射率,腔体在从实线的一部分中激发的情况下模拟吸收动力学。然而,使用真实镜子,通过使用强不对称的谐振器,即,仍然可以通过使用强烈的谐振器来获得良好的比喻,即通过强不对称的谐振器,即具有比腔的端部镜的反射率显着降低的反射镜。

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