Top Tweets for #PRXCondMatt
An extensive database of over 157,000 spin space groups provides researchers with a searchable tool for exploring the symmetries of a wide variety of magnetic materials.
Read https://t.co/hzfRx8vl18
#PRXCondMatt #SpinGroups

A comprehensive classification of spin space groups, a hidden symmetry of magnetic materials, paves the way for a more complete understanding of magnetic phases and the design of novel materials.
Read https://t.co/Qor92WF7Dq
#PRXCondMatt #SpinGroups

A method for computing Feynman diagrams describing quantum many-body interactions offers a promising new solver for quantum impurity models.
Read https://t.co/a3BydGCNPs
@FlatironInst @FlatironCCQ @JSI_SLO
#PRXCondMatt, #PRXNumerical, #PRXStronglyCorrelated

Joint correlations between small numbers of eigenstates in a many-body quantum system can capture many aspects of quantum dynamics not captured by the current standard framework of the eigenstate thermalization hypothesis.
Read https://t.co/cVwTaLVNJY
#PRXqst #PRXCondMatt

Adding a third terminal to a hybrid Josephson junction leads to a large energy difference between spin-up and spin-down levels and zero-energy level crossings, suggesting a basis for encoding and processing quantum information.
Read https://t.co/oLgfGVvJZu
#PRXcondmatt #PRX2D

Measurements of Landau level gaps as a function of magnetic field and carrier density provide a new framework for understanding exchange interactions and their density dependence.
Read https://t.co/UbhQ3oUsYw
#PRXcondmatt #PRX2D #PRXjustpublished #PRXopenaccess

Measurements uncover the precise magnetic structures in EuIn2As2, a key step toward manipulating the material to host sought-after topological states.
Read https://t.co/n8EgABS9s8
#PRXjustpublished #PRXopenaccess #PRXcondmatt

Observations of unique excitons in a kind of 2D magnet reveal their origin—magnetic nickel ions—and their diffusive nature, suggesting a novel mechanism for controlling exciton properties.
Read https://t.co/HQRrmmYgPS
#PRXjustpublished #openaccess #PRXcondmatt #PRXexcitons

Given the symmetry properties of a quantum material, a new systematic framework can classify all the types of topological quantum spin liquids that can be realized in that material.
Read https://t.co/BlIf6bTJu2
#PRXjustpublished #openaccess #PRXcondmatt #PRXtopological #PRXqsl

A field theory to describe systems driven out of thermal equilibrium hints at several unusual behaviors, such as time crystalline order, that could not exist in equilibrium yet can be realized rather simply
Read https://t.co/Vixww5TEjY
#PRXjustpublished #openaccess #PRXcondmatt

Measurements of the electronic band structure in CeRh2As2 reveal coexisting features that may provide insight into its unusual, complex phase diagram.
Read https://t.co/PnqI6L7oC5
#PRXjustpublished #openaccess #PRXcondmatt

The abrupt onset of electrical breakdown could serve as a unique “smoking gun” bit of evidence of elusive excitonic insulator states: insulators that originate from electron-hole pairings.
Read https://t.co/9t9UcoQg1g
#PRXjustpublished #openaccess #PRXcondmatt

Electric transport measurements on antiferromagnetic FeSn show that an anisotropic Berry curvature distribution can induce a third-order nonlinear anomalous Hall effect.
Read https://t.co/4f0lL6Rs7E
@BertholdJaeck @youfeng93 @hkust
#PRXjustpublished #openaccess #PRXcondmatt

Observations of spin spatial oscillations reveal a previously hidden behavior of spin transport dynamics and identify a new degree of freedom for manipulating spin current, with potential implications for spintronic devices.
Read https://t.co/5Z9X1k6VMC
#PRXCondMatt

In the study of deconfined quantum critical points, the “fuzzy sphere” can act as a powerful microscope, magnifying and revealing a wealth of crucial information.
Read https://t.co/y3vqDCbJ1m
#PRXjustpublished #openaccess #PRXcondmatt

Angle-resolved photoemission spectroscopy of an iron-based superconductor resolves debates about its electronic structure and confirms the existence of topological superconductivity in this material.
Read https://t.co/rZ7sWYkxJx
#PRXjustpublished #openaccess #PRXcondmatt

The first comprehensive theoretical study of the finite magnetic field phase diagram of twisted bilayer graphene provides an in-depth tool kit for analyzing experimental data on Chern insulating states.
Read https://t.co/TpbE8sG2fP
@NationalMagLab
#PRXcondmatt

Group theory and first-principles calculations combine to predict which antiferromagnets have potentially useful net surface magnetization.
Read https://t.co/2GwbAOLrtI
@PhysicsMagazine Viewpoint https://t.co/tfcJGyK0P9
#PRXjustpublished #openaccess #PRXcondmatt

An extended theory of electrical transport illuminates how light is emitted when an electrical current flows through a metal-insulator-metal tunneling junction.
Read https://t.co/gqPQEma5hm
#PRXjustpublished #openaccess #PRXcondmatt

Spin liquids are intrinsically difficult to prepare, observe, and characterize, but carefully designed multilayer structures in 2D materials may overcome these obstacles.
Read https://t.co/N5uEWgpdId
@ETH_physics
@TU_Muenchen
#openaccess #PRXcondmatt #PRXjustpublished

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