Robust weak antilocalization due to spin-orbital entanglement in

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Robust weak antilocalization due to spin-orbital entanglement in
PDF] Multiband character revealed from weak antilocalization in platinum thin films
Robust weak antilocalization due to spin-orbital entanglement in
PDF) Robust weak antilocalization due to spin-orbital entanglement in Dirac material Sr3SnO
Robust weak antilocalization due to spin-orbital entanglement in
Spin-orbit coupling effect on the optoelectronic and thermoelectric properties of the perovskites A3SnO (A = Ca, Sr and Ba) - ScienceDirect
Robust weak antilocalization due to spin-orbital entanglement in
Robust weak antilocalization due to spin-orbital entanglement in Dirac material Sr3SnO
Robust weak antilocalization due to spin-orbital entanglement in
Weak antilocalization, spin–orbit interaction, and phase coherence length of a Dirac semimetal Bi0.97Sb0.03
Robust weak antilocalization due to spin-orbital entanglement in
Electron Spin Dynamics of Two‐Dimensional Layered Materials - Náfrádi - 2017 - Advanced Functional Materials - Wiley Online Library
Robust weak antilocalization due to spin-orbital entanglement in
Highly Efficient Gate Controllability of Rashba Spin-orbit Interaction in a Gate-all-around InAs Nanowire MOSFET
Robust weak antilocalization due to spin-orbital entanglement in
Materials, Free Full-Text
Robust weak antilocalization due to spin-orbital entanglement in
Multiple electron & phonon scattering effect achieves highly efficient thermoelectricity due to nanostructuring - ScienceDirect
Robust weak antilocalization due to spin-orbital entanglement in
PDF) Weak antilocalization, spin–orbit interaction, and phase coherence length of a Dirac semimetal Bi0.97Sb0.03
Robust weak antilocalization due to spin-orbital entanglement in
Multiple electron & phonon scattering effect achieves highly efficient thermoelectricity due to nanostructuring - ScienceDirect
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