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Conditional gate operation in superconducting charge qubits

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Conditional gate operation in superconducting charge qubits. / Yamamoto, T.; Pashkin, Yu A.; Astafiev, O.; Nakamura, Y.; Tsai, J. S.

Quantum Computing in Solid State Systems. Springer New York LLC, 2006. p. 10-18.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNChapter

Harvard

Yamamoto, T, Pashkin, YA, Astafiev, O, Nakamura, Y & Tsai, JS 2006, Conditional gate operation in superconducting charge qubits. in Quantum Computing in Solid State Systems. Springer New York LLC, pp. 10-18. https://doi.org/10.1007/0-387-31143-2_2

APA

Yamamoto, T., Pashkin, Y. A., Astafiev, O., Nakamura, Y., & Tsai, J. S. (2006). Conditional gate operation in superconducting charge qubits. In Quantum Computing in Solid State Systems (pp. 10-18). Springer New York LLC. https://doi.org/10.1007/0-387-31143-2_2

Vancouver

Yamamoto T, Pashkin YA, Astafiev O, Nakamura Y, Tsai JS. Conditional gate operation in superconducting charge qubits. In Quantum Computing in Solid State Systems. Springer New York LLC. 2006. p. 10-18 https://doi.org/10.1007/0-387-31143-2_2

Author

Yamamoto, T. ; Pashkin, Yu A. ; Astafiev, O. ; Nakamura, Y. ; Tsai, J. S. / Conditional gate operation in superconducting charge qubits. Quantum Computing in Solid State Systems. Springer New York LLC, 2006. pp. 10-18

Bibtex

@inbook{0c00ec1e8bab48d4939c4ee37cf38601,
title = "Conditional gate operation in superconducting charge qubits",
abstract = "A variety of Josephson-junction-based qubits have recently been implemented with remarkable progress in coherence time and read-out scheme. These developments, together with its potential scalability, have renewed the position of this solid-state device as a strong candidate as a building block for the quantum computer. On the other hand, coupling multiple qubits to construct a logic gate is another important step toward the realization of quantum computer. In this paper, we present our experiments on conditional gate operations using coupled superconducting charge qubits.",
author = "T. Yamamoto and Pashkin, {Yu A.} and O. Astafiev and Y. Nakamura and Tsai, {J. S.}",
year = "2006",
month = dec,
day = "1",
doi = "10.1007/0-387-31143-2_2",
language = "English",
isbn = "0387263322",
pages = "10--18",
booktitle = "Quantum Computing in Solid State Systems",
publisher = "Springer New York LLC",

}

RIS

TY - CHAP

T1 - Conditional gate operation in superconducting charge qubits

AU - Yamamoto, T.

AU - Pashkin, Yu A.

AU - Astafiev, O.

AU - Nakamura, Y.

AU - Tsai, J. S.

PY - 2006/12/1

Y1 - 2006/12/1

N2 - A variety of Josephson-junction-based qubits have recently been implemented with remarkable progress in coherence time and read-out scheme. These developments, together with its potential scalability, have renewed the position of this solid-state device as a strong candidate as a building block for the quantum computer. On the other hand, coupling multiple qubits to construct a logic gate is another important step toward the realization of quantum computer. In this paper, we present our experiments on conditional gate operations using coupled superconducting charge qubits.

AB - A variety of Josephson-junction-based qubits have recently been implemented with remarkable progress in coherence time and read-out scheme. These developments, together with its potential scalability, have renewed the position of this solid-state device as a strong candidate as a building block for the quantum computer. On the other hand, coupling multiple qubits to construct a logic gate is another important step toward the realization of quantum computer. In this paper, we present our experiments on conditional gate operations using coupled superconducting charge qubits.

U2 - 10.1007/0-387-31143-2_2

DO - 10.1007/0-387-31143-2_2

M3 - Chapter

AN - SCOPUS:62749171886

SN - 0387263322

SN - 9780387263328

SP - 10

EP - 18

BT - Quantum Computing in Solid State Systems

PB - Springer New York LLC

ER -