A Cryogenic 12 GHz Frequency Doubler With Temperature Compensation for Trapped-Ion Quantum Computer
Author:
Affiliation:
1. Institute for CMOS Design, Technische Universität Braunschweig, Brunswick, Germany
2. Institute of Quantum Optics, Leibniz Universität Hannover, Hannover, Germany
3. Department of EEE, Keio University, Yokohama, Japan
Funder
German BMBF funded Project QuMIC
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering
Link
http://xplorestaging.ieee.org/ielx7/8920/10262390/10167819.pdf?arnumber=10167819
Reference28 articles.
1. An E-Band SiGe High Efficiency, High Harmonic Suppression Amplifier Multiplier Chain With Wide Temperature Operating Range
2. 66 GHz 11.5 mW low-power SiGe frequency quadrupler operating at 300 K and 4 K;zhang;Proc GeMiC,2022
3. Robust and Resource-Efficient Microwave Near-Field Entangling Be+9 Gate
4. A 13 GHz PA with Amplitude Modulation for Entanglement Generation in Multi-Qubit 171Yb+ Gates of an Ion-Trapped Quantum Computer
5. Injection-Locked CMOS Frequency Doublers for $\mu$-Wave and mm-Wave Applications
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1. A Fully Integrated Three-Channel Cryogenic Microwave SoC for Qubit State Control in 9Be+ Trapped-Ion Quantum Computer operating at 4 K;2024 IEEE Radio Frequency Integrated Circuits Symposium (RFIC);2024-06-16
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