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Quantum transport of strongly interacting photons in a one-dimensional nonlinear waveguide

机译:一维非线性波导中强相互作用光子的量子输运

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摘要

We present a theoretical technique for solving the quantum transport problem of a few photons through a one-dimensional, strongly nonlinear waveguide. We specifically consider the situation where the evolution of the optical field is governed by the quantum nonlinear Schrödinger equation. Although this kind of nonlinearity is quite general, we focus on a realistic implementation involving cold atoms loaded in a hollow-core optical fiber, where the atomic system provides a tunable nonlinearity that can be large even at a single-photon level. In particular, we show that when the interaction between photons is effectively repulsive, the transmission of multiphoton components of the field is suppressed. This leads to antibunching of the transmitted light and indicates that the system acts as a single-photon switch. On the other hand, in the case of attractive interaction, the system can exhibit either antibunching or bunching, which is in stark contrast to semiclassical calculations. We show that the bunching behavior is related to the resonant excitation of bound states of photons inside the system.
机译:我们提出一种理论技术来解决一维强非线性波导中几个光子的量子输运问题。我们专门考虑光学场的演化受量子非线性Schrödinger方程支配的情况。尽管这种非线性非常普遍,但我们将重点放在涉及在空心光纤中加载冷原子的实际实现中,其中原子系统提供了即使在单光子级也可能很大的可调非线性。特别地,我们表明,当光子之间的相互作用被有效排斥时,该场的多光子分量的传输受到抑制。这会导致透射光发生反聚束,并指示该系统充当单光子开关。另一方面,在有吸引力的交互作用下,系统可以显示反聚束或聚束,这与半经典计算形成鲜明对比。我们表明聚束行为与系统内光子束缚态的共振激发有关。

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