This repository contains the data and the code used in the paper "Percolative supercurrent in superconductor--ferromagnetic-insulator bilayers"
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Updated
Apr 25, 2024 - Jupyter Notebook
This repository contains the data and the code used in the paper "Percolative supercurrent in superconductor--ferromagnetic-insulator bilayers"
Weidenmuller S-matrix approach to a quantum many-body mesoscopic system with tunneling and Andreev phenomena to plot the differential conductance, following Beenakker's random matrix theory.
We propose the existence of a fundamental mass scale, M c ≈ 5.3 × 10 − 16 kg, where quantum unitarity is spontaneously violated due to interaction with the cosmological acceleration horizon.
We derive a fundamental limit on the mass of objects capable of sustaining spatial superpositions, based on the Bekenstein entropy bound and the holographic principle.
A fundamental mass scale where quantum unitarity spontaneously breaks down due to interaction with the cosmological acceleration horizon.
To simulate and validate the existence of a universal critical mass scale ( M c ) where quantum superpositions naturally collapse due to entropic gravity / information horizon fluctuations.
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