Coherent control of collective spontaneous emission in an extended atomic ensemble resonantly interacting with single-photon wave packets is analyzed. A scheme for coherent manipulation of collective atomic states is developed such that superradiant states of the atomic system can be converted into subradiant ones and vice versa. Possible applications of such a scheme for optical quantum-state storage and single-photon wave packet shaping are discussed. It is shown that also in the absence of inhomogeneous broadening of the resonant line, single-photon wave packets with arbitrary pulse shape may be recorded as a subradiant state and reconstructed even although the duration of the wave packets is larger than the superradiant lifetime. Specif...
The mapping of photonic states to collective excitations of atomic ensembles is a powerful tool whic...
We propose a quantum memory protocol where an input light field can be stored onto and released from...
Abstract: We describe a general technique that allows for an ideal transfer of quantum correlations ...
Coherent control of collective spontaneous emission in an extended atomic ensemble resonantly intera...
Driven by the need to develop efficient atom-photon interfaces, recent efforts have proposed replaci...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
Abstract: We show that it is possible to "store" quantum states of single-photon fields by mapping t...
We describe a technique for generating pulses of light with controllable photon numbers, propagation...
While artificially fabricated patterned metasurfaces are providing paradigm-shifting optical compone...
We demonstrate coherent control of spontaneous emission from a three-level atom with one resonant fr...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
A central goal within quantum optics is to realize efficient, controlled interactions between photon...
Photonic quantum information technologies rely on quantum memory for long-lived storage and coherent...
An elementary quantum network operation involves storing a qubit state in an atomic quantum memory n...
A scheme for creating subradiant states in an extended system of atoms, based on the use of an exter...
The mapping of photonic states to collective excitations of atomic ensembles is a powerful tool whic...
We propose a quantum memory protocol where an input light field can be stored onto and released from...
Abstract: We describe a general technique that allows for an ideal transfer of quantum correlations ...
Coherent control of collective spontaneous emission in an extended atomic ensemble resonantly intera...
Driven by the need to develop efficient atom-photon interfaces, recent efforts have proposed replaci...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
Abstract: We show that it is possible to "store" quantum states of single-photon fields by mapping t...
We describe a technique for generating pulses of light with controllable photon numbers, propagation...
While artificially fabricated patterned metasurfaces are providing paradigm-shifting optical compone...
We demonstrate coherent control of spontaneous emission from a three-level atom with one resonant fr...
DoctorQuantum lights have been the essential sources for exploring fundamental quantum effects in qu...
A central goal within quantum optics is to realize efficient, controlled interactions between photon...
Photonic quantum information technologies rely on quantum memory for long-lived storage and coherent...
An elementary quantum network operation involves storing a qubit state in an atomic quantum memory n...
A scheme for creating subradiant states in an extended system of atoms, based on the use of an exter...
The mapping of photonic states to collective excitations of atomic ensembles is a powerful tool whic...
We propose a quantum memory protocol where an input light field can be stored onto and released from...
Abstract: We describe a general technique that allows for an ideal transfer of quantum correlations ...