Recently, intensely driven laser-matter interactions have been used to connect the fields of strong laser field physics with quantum optics by generating non-classical states of light. Here, we make a further key step and show the potential of strong laser fields for generating controllable high-photon-number coherent-state superpositions. This has been achieved by using two of the most prominent strong-laser induced processes: high-harmonic generation and above-threshold ionization. We show how the obtained coherent-state superpositions change from an optical Schr\"odinger "cat" state to a "kitten" state by changing the atomic density in the laser-atom interaction region, and we demonstrate the generation of a 9-photon shifted optical "cat...
Experimental efforts toward the detection of the nonperturbative strong-field regime of the Breit-Wh...
The laser-induced modification of a fundamental process of quantum electrodynamics, the conversion o...
The dynamics of charged particles in electromagnetic fields is an essential component of understandi...
The physics of intense laser–matter interactions1,2 is described by treating the light pulses classi...
High-power laser facilities give experimental access to fundamental strong-field quantum electrodyna...
When photons propagate in vacuum they may fluctuate into matter pairs thus allowing the vacuum to be...
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
Quantum information science and intense laser matter interaction are two apparently unrelated fields...
In the domain of quantum metrology cat states have demonstrated their utility despite their inherent...
We study non-classical pathways and quantum interference in enhanced ionisation of diatomic molecule...
Strongly driven systems of emitters offer an attractive source of light over broad spectral ranges u...
Linearity is a fundamental postulate of quantum mechanics which is occasionally the subject of debat...
The realization of high-quality special nonclassical states beyond strong single atom-cavity couplin...
General formulation in the realm of strong-field quantum electrodynamics is provided for a process t...
The recent progress in the quantum optical formulation of the process of high harmonic generation ha...
Experimental efforts toward the detection of the nonperturbative strong-field regime of the Breit-Wh...
The laser-induced modification of a fundamental process of quantum electrodynamics, the conversion o...
The dynamics of charged particles in electromagnetic fields is an essential component of understandi...
The physics of intense laser–matter interactions1,2 is described by treating the light pulses classi...
High-power laser facilities give experimental access to fundamental strong-field quantum electrodyna...
When photons propagate in vacuum they may fluctuate into matter pairs thus allowing the vacuum to be...
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
Quantum information science and intense laser matter interaction are two apparently unrelated fields...
In the domain of quantum metrology cat states have demonstrated their utility despite their inherent...
We study non-classical pathways and quantum interference in enhanced ionisation of diatomic molecule...
Strongly driven systems of emitters offer an attractive source of light over broad spectral ranges u...
Linearity is a fundamental postulate of quantum mechanics which is occasionally the subject of debat...
The realization of high-quality special nonclassical states beyond strong single atom-cavity couplin...
General formulation in the realm of strong-field quantum electrodynamics is provided for a process t...
The recent progress in the quantum optical formulation of the process of high harmonic generation ha...
Experimental efforts toward the detection of the nonperturbative strong-field regime of the Breit-Wh...
The laser-induced modification of a fundamental process of quantum electrodynamics, the conversion o...
The dynamics of charged particles in electromagnetic fields is an essential component of understandi...