The coherence in quantum superposition states of protons (and chemically similar particles, the positive muons) has been studied in some condensed matter environments. It is shown that if the proton systems and the experimental techniques used to study them are carefully selected, it is possible to observe quantum delocalization states of single particles and to understand the mechanisms for their loss of coherence. Quantum correlated two- and multiparticle states of protons lose coherence very fast when coupled to condensed matter environments, but new sub-femtosecond techniques have made them accessible to experimental studies. The degree of decoherence can be measured as function of time and the decoherence mechanisms can, at leas...
In a micromaser where a classical field strongly drives the atoms while they cross the cavity, rema...
Nuclei and electrons in condensed matter and/or molecules are usually entangled, due to the prevaili...
Certain quantum states are well known to be particularly fragile in the presence of decoherence, as ...
We present an 'overview' of coherence-to-decoherence transition in certain selected problems of cond...
The unitary evolution of a quantum system preserves its coherence, but interactions between the syst...
Coherence is a familiar concept in physics. It is the driving force behind wavelike phenomena such a...
The superposition of chiral states of chiral molecules, as delocalized quantum states of a many-part...
Abstract. Decoherence is an extremely fast and ecient environment-induced process transforming macro...
It is known that a macroscopic quantum superposition (MQS), when it is exposed to an environment, de...
Coherence of particles in form of matter waves is one of the basic properties of nature which distin...
We experimentally and theoretically study phase coherence in two-component Bose-Einstein condensates...
The ability to live in coherent superpositions is a signature trait of quantum systems and constitut...
Decoherence of quantum entangled particles is observed in most systems, and is usually caused by sys...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographic...
This thesis addresses the problem of a form of anomalous decoherence that sheds light into the spect...
In a micromaser where a classical field strongly drives the atoms while they cross the cavity, rema...
Nuclei and electrons in condensed matter and/or molecules are usually entangled, due to the prevaili...
Certain quantum states are well known to be particularly fragile in the presence of decoherence, as ...
We present an 'overview' of coherence-to-decoherence transition in certain selected problems of cond...
The unitary evolution of a quantum system preserves its coherence, but interactions between the syst...
Coherence is a familiar concept in physics. It is the driving force behind wavelike phenomena such a...
The superposition of chiral states of chiral molecules, as delocalized quantum states of a many-part...
Abstract. Decoherence is an extremely fast and ecient environment-induced process transforming macro...
It is known that a macroscopic quantum superposition (MQS), when it is exposed to an environment, de...
Coherence of particles in form of matter waves is one of the basic properties of nature which distin...
We experimentally and theoretically study phase coherence in two-component Bose-Einstein condensates...
The ability to live in coherent superpositions is a signature trait of quantum systems and constitut...
Decoherence of quantum entangled particles is observed in most systems, and is usually caused by sys...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2002.Includes bibliographic...
This thesis addresses the problem of a form of anomalous decoherence that sheds light into the spect...
In a micromaser where a classical field strongly drives the atoms while they cross the cavity, rema...
Nuclei and electrons in condensed matter and/or molecules are usually entangled, due to the prevaili...
Certain quantum states are well known to be particularly fragile in the presence of decoherence, as ...