Fay A, Hoskinson E, Lecocq F, Lévy L P, Hekking F W J, Guichard W, Buisson O
Institut Néel, C.N.R.S.-Université Joseph Fourier, BP 166, 38042 Grenoble-cedex 9, France.
Phys Rev Lett. 2008 May 9;100(18):187003. doi: 10.1103/PhysRevLett.100.187003. Epub 2008 May 6.
We have realized a tunable coupling over a large frequency range between an asymmetric Cooper pair transistor (charge qubit) and a dc SQUID (phase qubit). Our circuit enables the independent manipulation of the quantum states of each qubit as well as their entanglement. The measurement of the charge qubit's quantum states is performed by an adiabatic quantum transfer from the charge to the phase qubit. The measured coupling strength is in agreement with an analytic theory including a capacitive and a tunable Josephson coupling between the two qubits.
我们已经实现了在大频率范围内非对称库珀对晶体管(电荷量子比特)与直流超导量子干涉器件(相位量子比特)之间的可调耦合。我们的电路能够独立操纵每个量子比特的量子态及其纠缠态。电荷量子比特量子态的测量是通过从电荷量子比特到相位量子比特的绝热量子转移来进行的。测得的耦合强度与包含两个量子比特之间电容性和可调约瑟夫森耦合的解析理论相符。