We provide an answer to the long-standing problem of mixing quantum and classical dynamics within a single formalism. The construction is based on \(p\)-mechanical derivation of quantum and classical dynamics from the representation theory of the Heisenberg group. To achieve a quantum-classical mixing we take the product of two copies of the Heisenberg group which represent two different Planck's constants. In comparison with earlier guesses our answer contains an extra term of analytical nature, which was not obtained before in purely algebraic setup
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
A recent proposal for mixed dynamics of classical and quantum ensembles is shown, in contrast to oth...
A set of brackets for classical dissipative systems, subject to external random forces, are derived....
We provide an answer to the long standing problem of mixing quantum and classical dynamics within a ...
Using a group theoretical approach we derive an equation of motion for a mixed quantum-classical sys...
We describe an p-mechanical (see funct-an/9405002 and quant-ph/9610016) brackets which generate quan...
Quantum-classical mixing is studied by a group-theoretical approach, and a quantum-classical equatio...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
We discuss two approaches that are frequently used to describe quantum-classical hybrid system. One ...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
We sketch a group-theoretical framework, based on the Heisenberg–Weyl group, encompassing both quant...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
We present a consistent framework of coupled classical and quantum dynamics. Our result allows us to...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
A recent proposal for mixed dynamics of classical and quantum ensembles is shown, in contrast to oth...
A set of brackets for classical dissipative systems, subject to external random forces, are derived....
We provide an answer to the long standing problem of mixing quantum and classical dynamics within a ...
Using a group theoretical approach we derive an equation of motion for a mixed quantum-classical sys...
We describe an p-mechanical (see funct-an/9405002 and quant-ph/9610016) brackets which generate quan...
Quantum-classical mixing is studied by a group-theoretical approach, and a quantum-classical equatio...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
We discuss two approaches that are frequently used to describe quantum-classical hybrid system. One ...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
We sketch a group-theoretical framework, based on the Heisenberg–Weyl group, encompassing both quant...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
We present a consistent framework of coupled classical and quantum dynamics. Our result allows us to...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
International audienceSeveral quantum gravity and string theory thought experiments indicate that th...
A recent proposal for mixed dynamics of classical and quantum ensembles is shown, in contrast to oth...
A set of brackets for classical dissipative systems, subject to external random forces, are derived....