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Pyroelectric Influence on Lithium Niobate During the Thermal Transition for Cryogenic Integrated Photonics

Authors :
Thiele, Frederik
Hummel, Thomas
Lange, Nina Amelie
Dreher, Felix
Protte, Maximilian
Bruch, Felix vom
Lengeling, Sebastian
Herrmann, Harald
Eigner, Christof
Silberhorn, Christine
Bartley, Tim J.
Publication Year :
2023

Abstract

Lithium niobate has emerged as a promising platform for integrated quantum optics, enabling efficient generation, manipulation, and detection of quantum states of light. However, integrating single-photon detectors requires cryogenic operating temperatures, since the best performing detectors are based on narrow superconducting wires. While previous studies have demonstrated the operation of quantum light sources and electro-optic modulators in LiNbO3 at cryogenic temperatures, the thermal transition between room temperature and cryogenic conditions introduces additional effects that can significantly influence device performance. In this paper, we investigate the generation of pyroelectric charges and their impact on the optical properties of lithium niobate waveguides when changing from room temperature to 25K, and vice versa. We measure the generated pyroelectric charge flow and correlate this with fast changes in the birefringence acquired through the Senarmont method. Both electrical and optical influence of the pyroelectric effect occurs predominantly at temperatures above 100K.

Subjects

Subjects :
Physics - Optics
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2306.12123
Document Type :
Working Paper