2006
DOI: 10.1103/physrevb.73.024506
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Multiphoton transitions between energy levels in a phase-biased Cooper-pair box

Abstract: We investigated both theoretically and experimentally dynamic features of a phase-biased charge qubit consisting of a single-Cooper-pair transistor closed by a superconducting loop. The effective inductance of the qubit was probed by a high-quality tank circuit. In the presence of a microwave power, with a frequency of the order of the qubit energy level separation, an alteration of the qubit inductance was observed. We demonstrate that this effect is caused by the redistribution of the qubit level population.… Show more

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Cited by 43 publications
(52 citation statements)
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“…In order to reconstruct flux qubits parameters we coupled them inductively to an electromagnetic oscillator [5] (note that tank circuit can be used as a detector for charge qubits as well, see for example [6,7]). If the resonant frequency of an oscillator o is less than the qubit characteristic frequency D/h (o 5D/h) where D is the qubit's energy level spacing, the resonant frequency of the tank-qubit arrangement contains information on the curvature of the ground state of the qubit.…”
Section: Methodsmentioning
confidence: 99%
“…In order to reconstruct flux qubits parameters we coupled them inductively to an electromagnetic oscillator [5] (note that tank circuit can be used as a detector for charge qubits as well, see for example [6,7]). If the resonant frequency of an oscillator o is less than the qubit characteristic frequency D/h (o 5D/h) where D is the qubit's energy level spacing, the resonant frequency of the tank-qubit arrangement contains information on the curvature of the ground state of the qubit.…”
Section: Methodsmentioning
confidence: 99%
“…More general, the influence of the qubit on the oscillator depends on the qubit's state which, in turn, is influenced by Rabi oscillations. Therefore, the tank circuit can be used as a detector for the spectroscopy measurements [9,21,22]. For instance, Sisyphus cooling and pumping of the tank circuit by a superconducting qubit have been recently demonstrated [23].…”
Section: Ground State Measurementsmentioning
confidence: 99%
“…Первые два параметра можно определить либо в дисперсионном режиме, когда резонансная частота сверхпроводникового резонатора [6][7][8], либо методом двухчастотной спектроскопии, когда в допол-нение к пробному сигналу кубит возбуждается высокой частотой, близкой к расстоянию между энергетическими уровнями кубита [5]. Что касается двух других парамет-ров, то g обычно рассчитывается численно, исходя из дизайна структуры кубит−резонатор, а γ определяется как подгоночный параметр для характерного провала в зависимости коэффициента прохождения от смещения кубита на фиксированной частоте [5].…”
Section: методика определения параметров кубитаunclassified