A "Schrödinger cat" state of free-propagating light can be defined as a quantum superposition of well separated coherent states. We demonstrated, theoretically and experimentally, a protocol which allows to generate arbitrarily large squeezed Schrödinger cat states, using a homodyne detection and photon number states as resources. We implemented this protocol experimentally with light pulses containing two photons, producing a squeezed Schrödinger cat state with a negative Wigner function. This state clearly presents several quantum phase-space interference fringes between the "dead" and "alive" components, and it is large enough to become useful for experimental tests of quantum theory and quantum information processing
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
We show that conditional output measurement on a beam splitter may be used to produce photon-added s...
In this thesis, we propose a new scheme for the generation of mesoscopic optical quantum states of l...
Schrödinger's cat is a Gedankenexperiment in quantum physics, in which an atomic decay triggers the ...
We proposed and analyzed a scheme to generate large-size Schr\"{o}dinger cat states based on linear ...
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
In recent years, there has been an increased interest in the generation of superpositions of coheren...
Schrödinger’s famous Gedankenexperiment has inspired multiple generations of physicists to think abo...
We propose a method for generating an optical Schrodinger-cat-like state in a cavity in a substantia...
We discuss the possibility of generating and detecting, by a tomographic reconstruction of the Wigne...
We present a scheme for the amplification of Schrodinger cat states that collapses two smaller state...
We present a scheme for the amplification of Schrodinger cat states that collapses two smaller state...
We propose an optical scheme to generate a superposition of coherent states with enhanced size adopt...
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
We show that conditional output measurement on a beam splitter may be used to produce photon-added s...
In this thesis, we propose a new scheme for the generation of mesoscopic optical quantum states of l...
Schrödinger's cat is a Gedankenexperiment in quantum physics, in which an atomic decay triggers the ...
We proposed and analyzed a scheme to generate large-size Schr\"{o}dinger cat states based on linear ...
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
In this thesis, we develop new methods to generate and analyze non-classical states of the light for...
In recent years, there has been an increased interest in the generation of superpositions of coheren...
Schrödinger’s famous Gedankenexperiment has inspired multiple generations of physicists to think abo...
We propose a method for generating an optical Schrodinger-cat-like state in a cavity in a substantia...
We discuss the possibility of generating and detecting, by a tomographic reconstruction of the Wigne...
We present a scheme for the amplification of Schrodinger cat states that collapses two smaller state...
We present a scheme for the amplification of Schrodinger cat states that collapses two smaller state...
We propose an optical scheme to generate a superposition of coherent states with enhanced size adopt...
Strong laser-atom interactions can produce highly non-classical states of light by using the process...
We show that conditional output measurement on a beam splitter may be used to produce photon-added s...
In this thesis, we propose a new scheme for the generation of mesoscopic optical quantum states of l...