Literature DB >> 32109120

Fast Gate-Based Readout of Silicon Quantum Dots Using Josephson Parametric Amplification.

S Schaal1, I Ahmed2, J A Haigh3, L Hutin4, B Bertrand4, S Barraud4, M Vinet4, C-M Lee5, N Stelmashenko5, J W A Robinson5, J Y Qiu6, S Hacohen-Gourgy6, I Siddiqi6, M F Gonzalez-Zalba3, J J L Morton1,7.   

Abstract

Spins in silicon quantum devices are promising candidates for large-scale quantum computing. Gate-based sensing of spin qubits offers a compact and scalable readout with high fidelity, however, further improvements in sensitivity are required to meet the fidelity thresholds and measurement timescales needed for the implementation of fast feedback in error correction protocols. Here, we combine radio-frequency gate-based sensing at 622 MHz with a Josephson parametric amplifier, that operates in the 500-800 MHz band, to reduce the integration time required to read the state of a silicon double quantum dot formed in a nanowire transistor. Based on our achieved signal-to-noise ratio, we estimate that singlet-triplet single-shot readout with an average fidelity of 99.7% could be performed in 1  μs, well below the requirements for fault-tolerant readout and 30 times faster than without the Josephson parametric amplifier. Additionally, the Josephson parametric amplifier allows operation at a lower radio-frequency power while maintaining identical signal-to-noise ratio. We determine a noise temperature of 200 mK with a contribution from the Josephson parametric amplifier (25%), cryogenic amplifier (25%) and the resonator (50%), showing routes to further increase the readout speed.

Entities:  

Year:  2020        PMID: 32109120     DOI: 10.1103/PhysRevLett.124.067701

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  3 in total

1.  Bifurcation Oscillator as an Advanced Sensor for Quantum State Control.

Authors:  Dmitrii Pashin; Marina Bastrakova; Arkady Satanin; Nikolay Klenov
Journal:  Sensors (Basel)       Date:  2022-08-31       Impact factor: 3.847

2.  A single hole spin with enhanced coherence in natural silicon.

Authors:  N Piot; B Brun; V Schmitt; S Zihlmann; V P Michal; A Apra; J C Abadillo-Uriel; X Jehl; B Bertrand; H Niebojewski; L Hutin; M Vinet; M Urdampilleta; T Meunier; Y-M Niquet; R Maurand; S De Franceschi
Journal:  Nat Nanotechnol       Date:  2022-09-22       Impact factor: 40.523

3.  Quantum logic with spin qubits crossing the surface code threshold.

Authors:  Xiao Xue; Maximilian Russ; Nodar Samkharadze; Brennan Undseth; Amir Sammak; Giordano Scappucci; Lieven M K Vandersypen
Journal:  Nature       Date:  2022-01-19       Impact factor: 69.504

  3 in total

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