Исследование направленных ответвителей для реализации квантовых операций над кубитами

И.О. Венедиктов, В. В. Ковалюк, П П Ан, А. Д. Голиков, С.С. Святодух, Г Н Гольцман
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Abstract

In this work, nanophotonic circuits with directional couplers are studied, which, along with phase shifters, are one of the main elements for creating circuits of a linear optical quantum computer. Directional couplers are two closely spaced waveguides, were made of silicon nitride. The subject of the study was the splitting ratio of directional couplers at a wavelength of 914 nm at room (300 K) and helium (3 K) temperatures. On the basis of experimental data, the coupling length at which all the power from one waveguide passes into another was extracted, and the refractive indices of silicon nitride at room (300 K) and helium temperatures (3 K) were found. The results of the work are of great importance in the design and manufacture of fully integrated quantum optical microcircuits with superconducting detectors operating at helium temperatures.
量子立方体操作定向耦合器研究
在这项工作中,研究了具有定向耦合器的纳米光子电路,它与移相器一起是创建线性光学量子计算机电路的主要元素之一。定向耦合器是两个紧密间隔的波导,由氮化硅制成。本研究的主题是在室温(300 K)和氦(3 K)温度下,914 nm波长方向耦合器的分裂比。在实验数据的基础上,提取了一个波导的全部功率传递到另一个波导时的耦合长度,得到了氮化硅在室温(300 K)和氦温度(3 K)下的折射率。研究结果对设计和制造在氦温度下工作的超导探测器的全集成量子光学微电路具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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