activity
20182024
most citedUnderstanding gravitationally induced decoherence parameters in neutrino oscillations using a microscopic quantum mechanical model

12 citations · 26 across the 4 of their papers we have counts for

collaborators

5 papers

gr-qc2024★ 12 cited

Understanding gravitationally induced decoherence parameters in neutrino oscillations using a microscopic quantum mechanical model

Alba Domi, Thomas Eberl, Max Joseph Fahn +5

In this work, a microscopic quantum mechanical model for gravitationally induced decoherence introduced by Blencowe and Xu is investigated in the context of neutrino oscillations.…

cond-mat.quant-gas2022

Interaction quenches in Bose gases studied with a time-dependent hypernetted-chain Euler-Lagrange method

Mathias Gartner, David Miesbauer, Michael Kobler +3

We present a new variational method to study the dynamics of a closed bosonic many-body system, the time-dependent hypernetted-chain Euler-Lagrange method, tHNC . Based on the Jast…

gr-qc2022★ 2 cited

An open scattering model in polymerized quantum mechanics

Kristina Giesel, Michael Kobler

We derive a quantum master equation in the context of a polymerized open quantum mechanical system for the scattering of a Brownian particle in an ideal gas environment. The model…

gr-qc2022★ 12 cited

A gravitationally induced decoherence model using Ashtekar variables

Max Joseph Fahn, Kristina Giesel, Michael Kobler

We consider the coupling of a scalar field to linearised gravity and derive a relativistic gravitationally induced decoherence model using Ashtekar variables. The model is formulat…

gr-qc2018

Dynamical Properties of the Mukhanov-Sasaki Hamiltonian in the context of adiabatic vacua and the Lewis-Riesenfeld invariant

Max Joseph Fahn, Kristina Giesel, Michael Kobler

We use the method of the Lewis-Riesenfeld invariant to analyze the dynamical properties of the Mukhanov-Sasaki Hamiltonian and, following this approach, investigate whether we can…