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Pulsed Generation of Quantum Coherences and Non-classicality in Light-Matter Systems

机译:光物质系统中脉冲的量子相干和非经典性生成

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We show that a pulsed stimulus can be used to generate many-body quantum coherences in light-matter systems of general size. Specifically, we calculate the exact real-time evolution of a driven, generic out-of-equilibrium system comprising an arbitrary number N qubits coupled to a global boson field. A novel form of dynamically-driven quantum coherence emerges for general N and without having to access the empirically challenging strong-coupling regime. Its properties depend on the speed of the changes in the stimulus. Non-classicalities arise within each subsystem that have eluded previous analyses. Our findings show robustness to losses and noise, and have potential functional implications at the systems level for a variety of nanosystems, including collections of N atoms, molecules, spins, or superconducting qubits in cavities -- and possibly even vibration-enhanced light harvesting processes in macromolecules.
机译:我们表明,脉冲刺激可用于在一般大小的光物质系统中生成多体量子相干性。具体来说,我们计算出一个驱动的,通用的不平衡系统的精确实时演化,该系统包括与全局玻色子场耦合的任意数量的N个量子比特。动态驱动的量子相干的一种新颖形式出现在一般的N上,而无需访问经验上具有挑战性的强耦合机制。它的属性取决于刺激变化的速度。每个子系统内都存在非经典性,而以前的分析都无法做到这一点。我们的发现显示出对损耗和噪声的鲁棒性,并且对各种纳米系统在系统级别具有潜在的功能含义,包括腔中N原子,分子,自旋或超导量子位的收集-甚至可能是增强振动的光收集过程在大分子中。

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