<p>Below the transition () coherence dies out quickly and the probability reaches its asymptotic value . The peak at is the result of the interference of waves going clock and anti-clockwise along the the circle and meeting again after turning around the structure. The rest of the structure comes from interference of waves scattering back from other chromophores. In the transition point and above coherent beats occur and the probability stays elevated for a very long time (not shown here). These are beats due to genuine quantum coherent superposition states.</p
It is known that a macroscopic quantum superposition (MQS), when it is exposed to an environment, de...
Recent observations of the long-lasting nonlinear signals in a variety of light-harvesting complexes...
We investigate quantum effects in pattern formation for a degenerate optical parametric oscillator w...
<p>Below the transition () coherence dies out quickly and the probability reaches its asymptotic val...
AbstractCoherent phenomena in molecular chromophores interacting with a dissipative environment is a...
Typically, quantum superpositions, and thus measurement projections of quantum states involving inte...
We give a new explanation for why some biological systems can stay quantum coherent for a long time ...
International audienceA phenomenological model is used for describing how a fluctuating bath modifie...
We have investigated the coherent dynamics of excitons in a single, a double, and a quintuple quantu...
Recent observations of the long-lasting nonlinear signals in a variety of light-harvesting complexes...
A coherent superposition of two Gaussian wavepackets, which freely evolves in time, gives rise to an...
Quantum superposition of molecular electronic states is very fragile because of thermal energy fluct...
We analyze the notion of quantum coherence in an interference experiment. We let the phase shifts fl...
Kubo's fluctuation theory of line shape forms the backbone of our understanding of optical and vibra...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
It is known that a macroscopic quantum superposition (MQS), when it is exposed to an environment, de...
Recent observations of the long-lasting nonlinear signals in a variety of light-harvesting complexes...
We investigate quantum effects in pattern formation for a degenerate optical parametric oscillator w...
<p>Below the transition () coherence dies out quickly and the probability reaches its asymptotic val...
AbstractCoherent phenomena in molecular chromophores interacting with a dissipative environment is a...
Typically, quantum superpositions, and thus measurement projections of quantum states involving inte...
We give a new explanation for why some biological systems can stay quantum coherent for a long time ...
International audienceA phenomenological model is used for describing how a fluctuating bath modifie...
We have investigated the coherent dynamics of excitons in a single, a double, and a quintuple quantu...
Recent observations of the long-lasting nonlinear signals in a variety of light-harvesting complexes...
A coherent superposition of two Gaussian wavepackets, which freely evolves in time, gives rise to an...
Quantum superposition of molecular electronic states is very fragile because of thermal energy fluct...
We analyze the notion of quantum coherence in an interference experiment. We let the phase shifts fl...
Kubo's fluctuation theory of line shape forms the backbone of our understanding of optical and vibra...
Manipulation of quantum interference requires that the system under control remains coherent, avoidi...
It is known that a macroscopic quantum superposition (MQS), when it is exposed to an environment, de...
Recent observations of the long-lasting nonlinear signals in a variety of light-harvesting complexes...
We investigate quantum effects in pattern formation for a degenerate optical parametric oscillator w...