arrow
返回

Quantum Dot-Based Frequency Multiplier

delete2023-06-20
delete3
delete
OA
AI
G
Giovanni A. Oakes
L
Lorenzo Peri
L
Laurence Cochrane
F
Frederico Martins
L
Louis Hutin
B
Benoît Bertrand
M
M. Vinet
A
Alberto Gomez-Saiz
C
C. J. B. Ford
C
Charles G. Smith
M
M. Fernando González-Zalba *
DOI:10.1103/PRXQuantum.4.020346delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Silicon offers the enticing opportunity to integrate hybrid quantum-classical computing systems on a single platform. For qubit control and readout, high-frequency signals are required. Therefore, devices that can facilitate its generation are needed. Here, we present a quantum dot-based radio-frequency multiplier operated at cryogenic temperatures. The device is based on the nonlinear capacitance-voltage character-istics of quantum dot systems arising from their low-dimensional density of states. We implement the multiplier in a multigate silicon-nanowire transistor using two complementary device configurations: a single quantum dot coupled to a charge reservoir and a coupled double quantum dot. We study the har-monic voltage conversion as a function of the energy detuning, the multiplication factor, and the harmonic phase noise and find near ideal performance up to a multiplication factor of 10. Our results demon-strate a method for high-frequency conversion that could be readily integrated into silicon-based quantum computing systems and be applied to other semiconductors.
Keyword:
PHASE NOISE
QUBITS

期刊

P
PRX Quantum
IF:
11
论文数:
919
被引数:
9.0K

机构

C
CEA
学者数:
3.5W
论文数: 2.3W
被引数: 62
U
University of Cambridge
学者数:
7.7W
论文数: 7.1W
被引数: 13.7W
引用论文

引用论文

Charge Noise and Overdrive Errors in Dispersive Readout of Charge, Spin, and Majorana Qubits
err2020-12-08
err23
errOAAI
errMaman, Vahid Derakhshan; Gonzalez-Zalba, M. F.; Palyi, Andras
err分享
err收藏
Charge and Spin State Readout of a Double Quantum Dot Coupled to a Resonator耦合到谐振器的双量子点的电荷和自旋态读出
err2010-07-21
err140
errOAAI
errPetersson, K. D.; Smith, C. G.; Anderson, D.; Atkinson, P.; Jones, G. A. C.; Ritchie, D. A.
err分享
err收藏
Qubits made by advanced semiconductor manufacturing先进半导体制造的量子比特
err2022-03-29
err177
errOAAI
errZwerver, A. M. J.; Krahenmann, T.; Watson, T. F.; Lampert, L.; George, H. C.; Pillarisetty, R.; Bojarski, S. A.; Amin, P.; Amitonov, S., V; Boter, J. M.; Caudillo, R.; Corras-Serrano, D.; Dehollain, J. P.; Droulers, G.; Henry, E. M.; Kotlyar, R.; Lodari, M.; Luthi, F.; Michalak, D. J.; Mueller, B. K.; Neyens, S.; Roberts, J.; Samkharadze, N.; Zheng, G.; Zietz, O. K.; Scappucci, G.; Veldhorst, M.; Vandersypen, L. M. K.; Clarke, J. S.
err分享
err收藏
Probing the limits of gate-based charge sensing探索基于门的电荷传感的极限
err2015-01-20
err137
errOAAI
errGonzalez-Zalba, M. F.; Barraud, S.; Ferguson, A. J.; Betz, A. C.
err分享
err收藏
Shot Noise of a Quantum Dot Measured with Gigahertz Impedance Matching
err2015-11-03
err16
errOAAI
errHasler, T.; Jung, M.; Ranjan, V.; Puebla-Hellmann, G.; Wallraff, A.; Schoenenberger, C.
err分享
err收藏
Fast High-Fidelity Single-Shot Readout of Spins in Silicon Using a Single-Electron Box
err2023-02-23
err22
errOAAI
errOakes, G. A.; Ciriano-Tejel, V. N.; Wise, D. F.; Fogarty, M. A.; Lundberg, T.; Laine, C.; Schaal, S.; Martins, F.; Ibberson, D. J.; Hutin, L.; Bertrand, B.; Stelmashenko, N.; Robinson, J. W. A.; Ibberson, L.; Hashim, A.; Siddiqi, I.; Lee, A.; Vinet, M.; Smith, C. G.; Morton, J. J. L.; Gonzalez-Zalba, M. F.
err分享
err收藏
Scaling silicon-based quantum computing using CMOS technology
err2021-12-20
err127
PREAI
errGonzalez-Zalba, M. F.; de Franceschi, S.; Charbon, E.; Meunier, T.; Vinets, M.; Dzurak, A. S.
err分享
err收藏
Spiderweb Array: A Sparse Spin-Qubit Array
err2022-08-19
err54
errOAAI
errBoter, Jelmer M.; Dehollain, Juan P.; van Dijk, Jeroen P. G.; Xu, Yuanxing; Hensgens, Toivo; Versluis, Richard; Naus, Henricus W. L.; Clarke, James S.; Veldhorst, Menno; Sebastiano, Fabio; Vandersypen, Lieven M. K.
err分享
err收藏
学者 查看更多内容