An integrated optical modulator operating at cryogenic temperatures

被引:0
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作者
Felix Eltes
Gerardo E. Villarreal-Garcia
Daniele Caimi
Heinz Siegwart
Antonio A. Gentile
Andy Hart
Pascal Stark
Graham D. Marshall
Mark G. Thompson
Jorge Barreto
Jean Fompeyrine
Stefan Abel
机构
[1] IBM Research – Zurich,Quantum Engineering Technology Labs, H. H. Wills Physics Laboratory
[2] University of Bristol,undefined
[3] Lumiphase AG,undefined
来源
Nature Materials | 2020年 / 19卷
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摘要
Photonic integrated circuits (PICs) operating at cryogenic temperatures are fundamental building blocks required to achieve scalable quantum computing and cryogenic computing technologies1,2. Silicon PICs have matured for room-temperature applications, but their cryogenic performance is limited by the absence of efficient low-temperature electro-optic modulation. Here we demonstrate electro-optic switching and modulation from room temperature down to 4 K by using the Pockels effect in integrated barium titanate (BaTiO3) devices3. We investigate the temperature dependence of the nonlinear optical properties of BaTiO3, showing an effective Pockels coefficient of 200 pm V−1 at 4 K. The fabricated devices show an electro-optic bandwidth of 30 GHz, ultralow-power tuning that is 109 times more efficient than thermal tuning, and high-speed data modulation at 20 Gbps. Our results demonstrate a missing component for cryogenic PICs, removing major roadblocks for the realization of cryogenic-compatible systems in the field of quantum computing, supercomputing and sensing, and for interfacing those systems with instrumentation at room temperature.
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页码:1164 / 1168
页数:4
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