We propose a new type of interferometry, based on geometric phases accumulated by a periodically driven two-level system undergoing multiple Landau-Zener transitions. As a specific example, we study its implementation in a superconducting charge pump. We find that interference patterns appear as a function of the pumping frequency and the phase bias, and clearly manifest themselves in the pumped charge. We also show that the effects described should persist in the presence of realistic decoherence
We investigate interference between topological interfacial modes in a semiconductor photonic crysta...
A visual observation of multiple Landau-Zener transitions between different modes is theoretically p...
Quantum phenomena related to geometric and topological phases are investigated. The first results pr...
We propose a new type of interferometry, based on geometric phases accumulated by a periodically dri...
One may probe coherence of a qubit by periodically sweeping its control parameter. The qubit is then...
Geometric quantum manipulation and Landau-Zener interferometry have been separately explored in many...
Paper presented at the Advanced Workshop on Landau-Zener Interferometry and Quantum Control in Conde...
We investigate experimentally and theoretically the interference at avoided crossings which are repe...
We demonstrate quantum coherent control of single electronic spins in a nitron-vacancy center in dia...
We investigate theoretically the behavior of the current oscillations in an electronic Mach-Zehnder ...
We study Landau-Zener-Stückelberg (LZS) interferometry in multilevel systems coupled to an Ohmic qua...
Abstract. By manipulating the discrete optical levels inside an optical resonator, we obtain a class...
We study fermions in a Mach-Zehnder interferometer, subject to a quantum-mechanical environment lead...
The excitation amplitude after multiple crossings is not a mere product of Landau-Zener transition p...
We describe a new version of the well-known gedanken experiments to determine which of the two paths...
We investigate interference between topological interfacial modes in a semiconductor photonic crysta...
A visual observation of multiple Landau-Zener transitions between different modes is theoretically p...
Quantum phenomena related to geometric and topological phases are investigated. The first results pr...
We propose a new type of interferometry, based on geometric phases accumulated by a periodically dri...
One may probe coherence of a qubit by periodically sweeping its control parameter. The qubit is then...
Geometric quantum manipulation and Landau-Zener interferometry have been separately explored in many...
Paper presented at the Advanced Workshop on Landau-Zener Interferometry and Quantum Control in Conde...
We investigate experimentally and theoretically the interference at avoided crossings which are repe...
We demonstrate quantum coherent control of single electronic spins in a nitron-vacancy center in dia...
We investigate theoretically the behavior of the current oscillations in an electronic Mach-Zehnder ...
We study Landau-Zener-Stückelberg (LZS) interferometry in multilevel systems coupled to an Ohmic qua...
Abstract. By manipulating the discrete optical levels inside an optical resonator, we obtain a class...
We study fermions in a Mach-Zehnder interferometer, subject to a quantum-mechanical environment lead...
The excitation amplitude after multiple crossings is not a mere product of Landau-Zener transition p...
We describe a new version of the well-known gedanken experiments to determine which of the two paths...
We investigate interference between topological interfacial modes in a semiconductor photonic crysta...
A visual observation of multiple Landau-Zener transitions between different modes is theoretically p...
Quantum phenomena related to geometric and topological phases are investigated. The first results pr...