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All-Optical Storage of Phase-Sensitive Quantum States of Light

机译:相位敏感量子态的全光存储

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摘要

We experimentally demonstrate storage and on-demand release of phase-sensitive, photon-number superposition states of the form alpha vertical bar 0 > + beta e(i)(theta)vertical bar 1 > for an optical quantized oscillator mode. For this purpose, we newly developed a phase-probing mechanism compatible with a storage system composed of two concatenated optical cavities, which was previously employed for storage of phase-insensitive single-photon states [Phys. Rev. X 3, 041028 (2013)]. This is the first demonstration of all-optically storing highly nonclassical and phase-sensitive quantum states of light. The strong nonclassicality of the states after storage becomes manifest as a negative region in the corresponding Wigner function shifted away from the origin in phase space. This negativity is otherwise, without the phase information of the memory system, unobtainable. While our scheme includes the possibility of optical storage, on-demand release and synchronization of arbitrary single-rail qubit states, it is not limited to such states. In fact, our technique is extendible to more general phase-sensitive states such as multiphoton superposition or entangled states, and thus it represents a significant step toward advanced optical quantum information processing, where highly nonclassical states are utilized as resources.
机译:我们通过实验证明了对于光量化振荡器模式,形式为α垂直条0> +βe(i)θ垂直条1>的相敏感,光子数叠加状态的存储和按需释放。为此,我们新开发了一种与由两个串联的光腔组成的存储系统兼容的相探测机制,该系统以前曾用于对相不敏感的单光子态进行存储。修订版X 3,041028(2013)]。这是全光存储高度非经典且对相位敏感的光量子态的第一个演示。存储后状态的强非经典性表现为相应的维格纳函数中的负区域从相空间的原点移开。否则,在没有存储系统的相位信息的情况下,这种负性是无法获得的。尽管我们的方案包括光存储,按需释放和任意单轨qubit状态同步的可能性,但它不限于此类状态。实际上,我们的技术可扩展到更一般的相敏态,例如多光子叠加或纠缠态,因此它代表了朝着高级光学量子信息处理迈出的重要一步,其中高度非经典态被用作资源。

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