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Demonstration of on-chip multi-mode phase-sensitive amplification

机译:芯片片式多模相敏感放大的演示

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Phase-sensitive amplification (PSA) is a nonlinear optical interaction providing attractive functionalities for all-optical classical and quantum signal processing with a wide range of promising applications, such as regeneration of high modulation formats [1] and amplification of entangled single-photon sources [2]. To exploit PSA in a scalable and compact implementation, this technique has been recently explored in various platforms, such as chalcogenide [3], crystalline [4, 5] and amorphous [6] silicon, GaInP [7], and SiGe [8]. However, the performance of PSA in these platforms is limited due to either high losses or material instability. Therefore, a stable CMOS-compatible nonlinear platform with high nonlinearity and low linear and nonlinear losses is desirable for PSA applications. Simultaneous to these developments in optical integration, novel optical operation schemes, such as multiple channel operation, have been developed to increase the information processing capabilities. So far, all the on-chip PSA demonstrations operated on single channel [3-8] and only a few works have simultaneously processed multiple channels in a single device, such as PPLN-waveguides [1] and large scale optical fibers [9]. Here, by taking advantages of a 45 cm-length spiral highly-nonlinear waveguide with ultralow propagation loss (0.08 dB cm-1), moderate nonlinearity (0.22 W-1m-1) and negligible nonlinear losses, we show the manipulation of a four-channel PSA process through the control of the initial phases, achieving a channel-selective as well as synchronized amplification with a net gain of 5 dB and an extinction ratio of 15 dB over a spectral bandwidth of 24 nm.
机译:相敏感放大(PSA)是一种非线性光学交互,为全光学经典和量子信号处理提供具有广泛有前途的应用的有吸引力的功能,例如高调制格式的再生[1]和缠绕的单光子源的放大[2]。为了利用可扩展和紧凑的实施方式,最近在各种平台中探讨了这种技术,例如硫属化物[3],结晶[4,5]和无定形[6]硅,GaINP [7]和SiGe [8] 。然而,由于高损耗或材料不稳定,这些平台中PSA的性能受到限制。因此,对PSA应用期望具有高非线性和低线性和非线性损耗的稳定CMOS兼容的非线性平台。同时对这些光学集成的发展,已经开发出新的光学操作方案,例如多通道操作,以增加信息处理能力。到目前为止,在单通道[3-8]上运行的所有片上PSA演示以及仅几种作品在单个设备中同时处理了多个通道,例如PPLN-WaveLide [1]和大规模光纤[9] 。在此,通过具有超级传播损失(0.08dB cm -1 / sup>),适度的非线性(0.22W -1 -1米的45厘米长的螺旋高度 - 非线性波导 -1 )和忽略不计的非线性损耗,通过控制初始阶段来展示四通道PSA过程,实现频道选择性以及具有5的净增益的同步放大DB和光谱带宽为24nm的光谱比例为15 dB。

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