论文标题
波导量子电动力学中的光学前体
Optical precursors in waveguide quantum electrodynamics
论文作者
论文摘要
当宽带信号通过分散介质传播时,某些频率组件的移动速度比脉冲中心的移动速度快。这导致了前体的出现,即比脉冲主要部分早于介质出现的瞬态信号,并且似乎在近距离传播。在这里,我们在最小设置中研究了前体的微观起源:一系列Qubits耦合到波导。线性传输函数仅收敛到用于大量量子数的连续介质的函数。然而,只有两个量子位产生的色散足以产生振荡瞬变。在电磁诱导的透明度条件下,最好观察到前体,因为脉冲的中心显着延迟。在这些条件下,只有一个Qutrit足以生成前体。我们的结果铺平了仅使用几个Qubit的光的分散工程的道路,并且可以通过与传输线或与光学波导耦合的传输线或原子相连的超导量子位来实现。
When a broadband signal propagates through a dispersive medium, some frequency components move faster than the center of the pulse. This leads to the appearance of precursors, transient signals that emerge from the medium earlier than the main part of the pulse and seem to propagate superluminally. Here, we investigate the microscopic origin of precursors in a minimal setup: an array of qubits coupled to a waveguide. The linear transmission function only converges to that of a continuous medium for large qubit numbers. Nevertheless, the dispersion produced by only two qubits is enough to produce oscillatory transients. Precursors are best observed under conditions of electromagnetically-induced transparency, as the center of the pulse is significantly delayed. Under these conditions, just a single qutrit is enough to generate a precursor. Our results pave the way towards dispersion engineering of light with just a few qubits, and can be realized with superconducting qubits coupled to transmission lines or atoms coupled to optical waveguides.