TY - JOUR
T1 - Robust Directional Couplers for State Manipulation in Silicon Photonic-Integrated Circuits
AU - Katzman, Moshe
AU - Piasetzky, Yonatan
AU - Rubin, Evyatar
AU - Barenboim, Ben
AU - Priel, Maayan
AU - Erew, Muhammed
AU - Zadok, Avinoam
AU - Suchowski, Haim
N1 - Publisher Copyright:
© 1983-2012 IEEE.
PY - 2022/12/1
Y1 - 2022/12/1
N2 - Photonic integrated circuits play a central role in current and future applications such as communications, sensing, ranging, and information processing. Photonic quantum computing will also likely require an integrated optics architecture for improved stability, scalability, and performance. Fault-tolerant quantum computing mandates very accurate and robust quantum gates. In this work, we demonstrate high-fidelity directional couplers for single-qubit gates in photonic integrated waveguides, utilizing a novel scheme of detuning-modulated composite segments. Specific designs for reduced sensitivity to wavelength variations and real-world geometrical fabrication errors in waveguides width and depth are presented. Enhanced wavelength tolerance is demonstrated experimentally. The concept shows great promise for scaling high fidelity gates as part of integrated quantum optics architectures.
AB - Photonic integrated circuits play a central role in current and future applications such as communications, sensing, ranging, and information processing. Photonic quantum computing will also likely require an integrated optics architecture for improved stability, scalability, and performance. Fault-tolerant quantum computing mandates very accurate and robust quantum gates. In this work, we demonstrate high-fidelity directional couplers for single-qubit gates in photonic integrated waveguides, utilizing a novel scheme of detuning-modulated composite segments. Specific designs for reduced sensitivity to wavelength variations and real-world geometrical fabrication errors in waveguides width and depth are presented. Enhanced wavelength tolerance is demonstrated experimentally. The concept shows great promise for scaling high fidelity gates as part of integrated quantum optics architectures.
KW - Coherent control
KW - directional couplers
KW - integrated quantum photonics
KW - quantum electronics
KW - silicon photonics
UR - http://www.scopus.com/inward/record.url?scp=85132508047&partnerID=8YFLogxK
U2 - 10.1109/JLT.2022.3175128
DO - 10.1109/JLT.2022.3175128
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AN - SCOPUS:85132508047
SN - 0733-8724
VL - 40
SP - 7634
EP - 7639
JO - Journal of Lightwave Technology
JF - Journal of Lightwave Technology
IS - 23
ER -