Cite this article:
Shi Zhen-Gang, Chen Xiong-Wen, Zhu Xi-Xiang, Song Ke-Hui. Scheme for realizing quantum computation and quantum information transfer with superconducting qubits coupling to a 1D transmission line resonatorJ. Chin. Phys. B, 2009, 18(3): 910-914.
| Shi Zhen-Gang, Chen Xiong-Wen, Zhu Xi-Xiang, Song Ke-Hui. Scheme for realizing quantum computation and quantum information transfer with superconducting qubits coupling to a 1D transmission line resonatorJ. Chin. Phys. B, 2009, 18(3): 910-914. |
Scheme for realizing quantum computation and quantum information transfer with superconducting qubits coupling to a 1D transmission line resonator
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Abstract
This paper proposes a simple scheme for realizing one-qubit and two-qubit quantum gates as well as multiqubit entanglement based on dc-SQUID charge qubits through the control of their coupling to a 1D transmission line resonator (TLR). The TLR behaves effectively as a quantum data-bus mode of a harmonic oscillator, which has several practical advantages including strong coupling strength, reproducibility, immunity to 1/f noise, and suppressed spontaneous emission. In this protocol, the data-bus does not need to stay adiabatically in its ground state, which results in not only fast quantum operation, but also high-fidelity quantum information processing. Also, it elaborates the transfer process with the 1D transmission line. -
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