We proposed a magnetized, radiatively efficient thin accretion disc model (M-thin) to scrutinize the disc–jet couplings, and further explain the radio/X-ray correlations in the black hole/neutron star X-ray binary.
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AI revolution in symbolic physics
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As a researcher deeply immersed in the world of AI and quantum physics, I have witnessed the revolutionary impact of AI on scientific discovery. In this post, I share my thoughts on recent developments in this field that relate to our SymPhysAI project: Stephen Wolfram’s insights and the emergence of Kolmogorov-Arnold Networks (KANs).
Quantum many-body observables in equilibrium are continuous at exceptional points
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The exceptional point serves as a non-isolated singularity (branch point) for biorthogonal wavefunctions but as a removable singularity for physical observables.
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Solar Eclipse in Xiamen
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publications
Theory of topological spin Josephson junctions
We found that inhomogeneous quantum spin chains support spin supercurrents, that enhance the entanglement between spins, and can be detected using dispersive techniques.
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Markovian Quantum Neuroevolution for Machine Learning
We introduced a Markovian quantum neuroevolution algorithm that autonomously finds near-optimal quantum neural networks for different machine-learning tasks, highlighting the potential of genetic algorithms in quantum architecture search.
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Quantum capsule networks
We have adapted the capsule network architecture for quantum machine learning, which showcases an improved classification accuracy, demonstrates a quantum speedup, and paves the way to explore explainable quantum AI.
Majorana-magnon interactions in topological Shiba chains
We demonstrate the uniform magnonic mode, which spreads over the entire Yu-Shiba-Rusinov chain, becomes imprinted with the parity of the ground state, and can discriminate between Majorana and trivial zero modes.
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Non-Hermitian Fermi-Dirac Distribution in Persistent Current Transport
Using Green's function formalism, we introduce a non-Hermitian Fermi-Dirac distribution and derive an analytical expression for the persistent current that relies solely on the complex spectrum.
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