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通过频率上转换至可见光波长实现的极高消光比电光调制器。

Extremely high extinction ratio electro-optic modulator via frequency upconversion to visible wavelengths.

作者信息

Sabatti Alessandra, Kellner Jost, Kaufmann Fabian, Chapman Robert J, Finco Giovanni, Kuttner Tristan, Maeder Andreas, Grange Rachel

出版信息

Opt Lett. 2024 Jul 15;49(14):3870-3873. doi: 10.1364/OL.525733.

Abstract

Intensity modulators are fundamental components for integrated photonics. From near-infrared (NIR) to visible spectral ranges, they find applications in optical communication and quantum technologies. In particular, they are required for the control and manipulation of atomic systems such as atomic clocks and quantum computers. Typical integrated electro-optic modulators operating at these wavelengths show high bandwidth and low-voltage operation, but their extinction ratios are moderate. Here we present an integrated thin-film lithium niobate electro-optic (EO) modulator operating in the C-band, which uses a subsequent periodically poled waveguide to convert the modulated signal from 1536 to 768 nm using the second-harmonic (SH) generation. We demonstrate that the upconverted signal retains the characteristics of the modulated input signal, reaching a measured high bandwidth of 35 GHz. Due to the nature of the nonlinear process, it exhibits, with respect to the fundamental signal, a doubled extinction ratio of 46 dB, which is the highest, to the best of our knowledge, recorded for near-infrared light on this platform.

摘要

强度调制器是集成光子学的基本组件。从近红外(NIR)到可见光谱范围,它们在光通信和量子技术中都有应用。特别是,它们是控制和操纵诸如原子钟和量子计算机等原子系统所必需的。在这些波长下工作的典型集成电光调制器具有高带宽和低电压操作,但它们的消光比适中。在此,我们展示了一种在C波段工作的集成薄膜铌酸锂电光(EO)调制器,它使用后续的周期性极化波导,通过二次谐波(SH)产生将调制信号从1536nm转换为768nm。我们证明,上转换后的信号保留了调制输入信号的特性,测得的高带宽达到35GHz。由于非线性过程的性质,相对于基波信号,它的消光比翻倍至46dB,据我们所知,这是该平台上近红外光记录的最高值。

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