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Coherent spin manipulation in an exchange-only qubit

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Coherent spin manipulation in an exchange-only qubit. / Laird, E A; Taylor, J M; DiVincenzo, DP et al.
In: Physical review B, Vol. 82, No. 7, 075403, 04.08.2010.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Laird, EA, Taylor, JM, DiVincenzo, DP, Marcus, CM, Hanson, MP & Gossard, AC 2010, 'Coherent spin manipulation in an exchange-only qubit', Physical review B, vol. 82, no. 7, 075403. https://doi.org/10.1103/PhysRevB.82.075403

APA

Laird, E. A., Taylor, J. M., DiVincenzo, DP., Marcus, C. M., Hanson, M. P., & Gossard, A. C. (2010). Coherent spin manipulation in an exchange-only qubit. Physical review B, 82(7), Article 075403. https://doi.org/10.1103/PhysRevB.82.075403

Vancouver

Laird EA, Taylor JM, DiVincenzo DP, Marcus CM, Hanson MP, Gossard AC. Coherent spin manipulation in an exchange-only qubit. Physical review B. 2010 Aug 4;82(7):075403. doi: 10.1103/PhysRevB.82.075403

Author

Laird, E A ; Taylor, J M ; DiVincenzo, DP et al. / Coherent spin manipulation in an exchange-only qubit. In: Physical review B. 2010 ; Vol. 82, No. 7.

Bibtex

@article{0bdc42beecf742169aca0766f8756370,
title = "Coherent spin manipulation in an exchange-only qubit",
abstract = "Initialization, two-spin coherent manipulation, and readout of a three-spin qubit are demonstrated using a few-electron triple quantum dot. The three-spin qubit is designed to allow all operations for full qubit control to be tuned via nearest-neighbor exchange interaction. Fast readout of charge states takes advantage of multiplexed reflectometry. Decoherence measured in a two-spin subspace is found to be consistent with predictions based on gate voltage noise with a uniform power spectrum. The theory of the exchange-only qubit is developed and it is shown that initialization of only two spins suffices for operation. Requirements for full multiqubit control using only exchange and electrostatic interactions are outlined.",
author = "Laird, {E A} and Taylor, {J M} and DP DiVincenzo and Marcus, {C M} and Hanson, {M P} and Gossard, {A C}",
year = "2010",
month = aug,
day = "4",
doi = "10.1103/PhysRevB.82.075403",
language = "English",
volume = "82",
journal = "Physical review B",
issn = "1098-0121",
publisher = "AMER PHYSICAL SOC",
number = "7",

}

RIS

TY - JOUR

T1 - Coherent spin manipulation in an exchange-only qubit

AU - Laird, E A

AU - Taylor, J M

AU - DiVincenzo, DP

AU - Marcus, C M

AU - Hanson, M P

AU - Gossard, A C

PY - 2010/8/4

Y1 - 2010/8/4

N2 - Initialization, two-spin coherent manipulation, and readout of a three-spin qubit are demonstrated using a few-electron triple quantum dot. The three-spin qubit is designed to allow all operations for full qubit control to be tuned via nearest-neighbor exchange interaction. Fast readout of charge states takes advantage of multiplexed reflectometry. Decoherence measured in a two-spin subspace is found to be consistent with predictions based on gate voltage noise with a uniform power spectrum. The theory of the exchange-only qubit is developed and it is shown that initialization of only two spins suffices for operation. Requirements for full multiqubit control using only exchange and electrostatic interactions are outlined.

AB - Initialization, two-spin coherent manipulation, and readout of a three-spin qubit are demonstrated using a few-electron triple quantum dot. The three-spin qubit is designed to allow all operations for full qubit control to be tuned via nearest-neighbor exchange interaction. Fast readout of charge states takes advantage of multiplexed reflectometry. Decoherence measured in a two-spin subspace is found to be consistent with predictions based on gate voltage noise with a uniform power spectrum. The theory of the exchange-only qubit is developed and it is shown that initialization of only two spins suffices for operation. Requirements for full multiqubit control using only exchange and electrostatic interactions are outlined.

U2 - 10.1103/PhysRevB.82.075403

DO - 10.1103/PhysRevB.82.075403

M3 - Journal article

VL - 82

JO - Physical review B

JF - Physical review B

SN - 1098-0121

IS - 7

M1 - 075403

ER -