We study the generalization of the previous collapse model known as quantum mechanics with universal position localizations (QMUPL), which accounts for both memory and dissipative effects. After deriving the nonlocal action describing the system\u2019s dynamics, we solve the equation of motion for a quantum harmonic oscillator via the path integral formalism. We give the explicit expression for the Green\u2019s function of the process. We focus on the case of an exponential correlation function and we analyze in detail the behavior Gaussian wave functions. In particular, we study the collapse process, comparing the results with those of related models
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
Models of spontaneous wave function collapse describe the quantum-to-classical transition by assumin...
Models of spontaneous wave function collapse describe the quantum-to-classical transition by assumin...
We set up a general formalism for models of spontaneous wavefunction collapse with dynamics represen...
We study a model of spontaneous wavefunction collapse for a free quantum particle. We analyse in det...
We study a model of spontaneous wavefunction collapse for a free quantum particle. We analyze in det...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We study the dissipative dynamics of a wave packet passing through two different non-linear media. T...
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
Models of spontaneous wave function collapse describe the quantum-to-classical transition by assumin...
Models of spontaneous wave function collapse describe the quantum-to-classical transition by assumin...
We set up a general formalism for models of spontaneous wavefunction collapse with dynamics represen...
We study a model of spontaneous wavefunction collapse for a free quantum particle. We analyse in det...
We study a model of spontaneous wavefunction collapse for a free quantum particle. We analyze in det...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We study the dissipative dynamics of a wave packet passing through two different non-linear media. T...
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
We study the time evolution of a linear superposition of two spatially separated wave packets, and w...
Models of spontaneous wave function collapse describe the quantum-to-classical transition by assumin...
Models of spontaneous wave function collapse describe the quantum-to-classical transition by assumin...