TY - JOUR
T1 - Emergence of intra-particle entanglement and time-varying violation of Bell's inequality in Dirac matter
AU - De Moraes Araújo, Bruna Gabrielly
AU - Cummings, Aron
AU - Roche, Stephan
PY - 2020
Y1 - 2020
N2 - We demonstrate the emergence and dynamics of intraparticle entanglement in massless Dirac fermions. This entanglement, generated by spin-orbit coupling, arises between the spin and sublattice pseudospin of electrons in graphene. The entanglement is a complex dynamic quantity but is generally large, independent of the initial state. Its time dependence implies a dynamical violation of a Bell inequality, while its magnitude indicates that large intraparticle entanglement is a general feature of graphene on a substrate. These features are also expected to impact entanglement between pairs of particles, and may be detectable in experiments that combine Cooper pair splitting with nonlocal measurements of spin-spin correlation in mesoscopic devices based on Dirac materials.
AB - We demonstrate the emergence and dynamics of intraparticle entanglement in massless Dirac fermions. This entanglement, generated by spin-orbit coupling, arises between the spin and sublattice pseudospin of electrons in graphene. The entanglement is a complex dynamic quantity but is generally large, independent of the initial state. Its time dependence implies a dynamical violation of a Bell inequality, while its magnitude indicates that large intraparticle entanglement is a general feature of graphene on a substrate. These features are also expected to impact entanglement between pairs of particles, and may be detectable in experiments that combine Cooper pair splitting with nonlocal measurements of spin-spin correlation in mesoscopic devices based on Dirac materials.
KW - Bell inequalities
KW - Bell's inequality
KW - Complex dynamics
KW - Massless dirac fermions
KW - Mesoscopic devices
KW - Non-local measurement
KW - Spin-spin correlation
KW - Time dependence
UR - https://www.scopus.com/pages/publications/85093114730
U2 - 10.1103/PhysRevB.102.041403
DO - 10.1103/PhysRevB.102.041403
M3 - Article
SN - 2469-9950
VL - 102
JO - Physical Review B
JF - Physical Review B
IS - 4
ER -