We have performed microwave reflection experiments on a charge-phase qubit coupled to an LC oscillator. We find that the system behaves like an artificial molecule showing vibronic sideband transitions. The reflected signal is determined by a combination of the Franck-Condon principle and resolved-sideband cooling or heating of the oscillator.Peer reviewe
Factors influencing the rate of reverse intersystem crossing (krISC) in thermally activated delayed ...
Quantum mechanical self-assembly of artificial minimal living cells were studied. These cells are ba...
The importance of the breakdown of the Born-Oppenheimer (BO) approximation in the vicinity of a coni...
We have performed microwave reflection experiments on a charge-phase qubit coupled to an LC oscillat...
Abstract Elementary experiments of atomic physics and quantum optics can be reproduced on a circuit ...
Spectroscopy is one of the most accurate probes of the molecular world. However, predicting molecula...
We report the observation of microwave coherent control of rotational states of ultracold 85Rb133Cs ...
We discuss Floquet engineering of dissipative molecular systems through periodic driving of an infra...
We study the impact of experimental imperfections on a recently proposed protocol for performing qua...
We report a conceptually straightforward witness that distinguishes coherent electronic oscillations...
We have recently seen the first plausible claims for quantum advantage using sampling problems such ...
We calculate the microwave spectra of ultracold 40K87Rb alkali-metal dimers, including hyperfine int...
We investigate a series of D–A molecules consisting of spiro[acridan-9,9′-fluorene] as the donor and...
We explore coherent multi-photon processes in 87Rb133Cs molecules using 3-level lambda and ladder co...
In addition to the exciting fundamental questions of quantum computing and implementation possibili...
Factors influencing the rate of reverse intersystem crossing (krISC) in thermally activated delayed ...
Quantum mechanical self-assembly of artificial minimal living cells were studied. These cells are ba...
The importance of the breakdown of the Born-Oppenheimer (BO) approximation in the vicinity of a coni...
We have performed microwave reflection experiments on a charge-phase qubit coupled to an LC oscillat...
Abstract Elementary experiments of atomic physics and quantum optics can be reproduced on a circuit ...
Spectroscopy is one of the most accurate probes of the molecular world. However, predicting molecula...
We report the observation of microwave coherent control of rotational states of ultracold 85Rb133Cs ...
We discuss Floquet engineering of dissipative molecular systems through periodic driving of an infra...
We study the impact of experimental imperfections on a recently proposed protocol for performing qua...
We report a conceptually straightforward witness that distinguishes coherent electronic oscillations...
We have recently seen the first plausible claims for quantum advantage using sampling problems such ...
We calculate the microwave spectra of ultracold 40K87Rb alkali-metal dimers, including hyperfine int...
We investigate a series of D–A molecules consisting of spiro[acridan-9,9′-fluorene] as the donor and...
We explore coherent multi-photon processes in 87Rb133Cs molecules using 3-level lambda and ladder co...
In addition to the exciting fundamental questions of quantum computing and implementation possibili...
Factors influencing the rate of reverse intersystem crossing (krISC) in thermally activated delayed ...
Quantum mechanical self-assembly of artificial minimal living cells were studied. These cells are ba...
The importance of the breakdown of the Born-Oppenheimer (BO) approximation in the vicinity of a coni...