We investigate some examples of quantum Zeno dynamics, when a system undergoes very frequent (projective) measurements that ascertain whether it is within a given spatial region. In agreement with previously obtained results, the evolution is found to be unitary and the generator of the Zeno dynamics is the Hamiltonian with hard-wall (Dirichlet) boundary conditions. By using a new approach to this problem, this result is found to be valid in an arbitrary N-dimensional compact domain. We then propose some preliminary ideas concerning the algebra of observables in the projected region and finally look at the case of a projection onto a lower-dimensional space: in such a situation the Zeno ansatz turns out to be a procedure to impose constrain...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
Frequent observation of a quantum system leads to quantum Zeno physics, where the system evolution i...
Frequent observation of a quantum system leads to quantum Zeno physics, where the system evolution i...
We investigate some examples of quantum Zeno dynamics, when a system undergoes very frequent (projec...
The dynamics of a quantum system undergoing frequent measurements (quantum Zeno effect) is investiga...
If frequent measurements ascertain whether a quantum system is still in its initial state, transitio...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
If frequent measurements ascertain whether a quantum system is still in a given subspace, it remains...
Effective non-Hermitian Hamiltonians describing decaying systems are derived and analyzed in connect...
A quantum Zeno dynamics can be obtained by means of frequent measurements, frequent unitary kicks or...
We show that quantum Zeno dynamics can be mimicked by the isolated evolution of an unobserved system...
We analyze the quantum Zeno dynamics that takes place when a field stored in a cavity undergoes freq...
We study the quantum Zeno effect in quantum statistical mechanics within the operator algebraic fram...
We present a decomposition of the general quantum mechanical evolution operator, that corresponds to...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
Frequent observation of a quantum system leads to quantum Zeno physics, where the system evolution i...
Frequent observation of a quantum system leads to quantum Zeno physics, where the system evolution i...
We investigate some examples of quantum Zeno dynamics, when a system undergoes very frequent (projec...
The dynamics of a quantum system undergoing frequent measurements (quantum Zeno effect) is investiga...
If frequent measurements ascertain whether a quantum system is still in its initial state, transitio...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
If frequent measurements ascertain whether a quantum system is still in a given subspace, it remains...
Effective non-Hermitian Hamiltonians describing decaying systems are derived and analyzed in connect...
A quantum Zeno dynamics can be obtained by means of frequent measurements, frequent unitary kicks or...
We show that quantum Zeno dynamics can be mimicked by the isolated evolution of an unobserved system...
We analyze the quantum Zeno dynamics that takes place when a field stored in a cavity undergoes freq...
We study the quantum Zeno effect in quantum statistical mechanics within the operator algebraic fram...
We present a decomposition of the general quantum mechanical evolution operator, that corresponds to...
The evolution of a quantum system undergoing very frequent measurements takes place in a proper subs...
Frequent observation of a quantum system leads to quantum Zeno physics, where the system evolution i...
Frequent observation of a quantum system leads to quantum Zeno physics, where the system evolution i...