#spinorbit
🔬✨ Donostia, epicenter of spintronics and orbitronics ✨🔬

Over 100 experts are gathering at #Spin&Orbit, organized by @nanoGUNE, to discuss the future of electronics.

Towards faster and more efficient technologies. 🚀💡

#SpinOrbit #Spintronics #Orbitronics #Donostia
April 1, 2025 at 1:46 PM
Theoretical study distinguishes AC phase behavior in conventional 2D electron systems (geometrical) vs graphene (dynamical), revealing fundamental differences in how spin-orbit coupling manifests across quantum systems.

#SpinOrbit #TopologicalPhase #Graphene
Geometrical vs Dynamical Nature of the Aharonov-Casher Phase
arxiv.org
August 14, 2026 at 7:38 AM
Tuning Rashba spin-orbit coupling strength in 2D electron gases controls quantum steering and Bell nonlocality. Optimal coupling strength recovers quantum correlations despite spatial electron separation.

#QuantumControl #SpinOrbit #Research
Controlling Quantum Correlations in 2D Electron Gases via Rashba Spin-Orbit Interaction
arxiv.org
July 31, 2026 at 8:24 AM
⚡ New paper about the nonlocal electrical detection of reciprocal orbital Edelstein effect. Read Gao et al. to explore the Onsager's reciprocity of orbital transport and more !

📕 Gao. W., et al. Nature Communications, 16(1), 6380.

#OBELIXproject #EUfunded #orbitronics #spinorbit #physics
June 23, 2026 at 7:01 AM
Single-electron double quantum dots with Rashba coupling achieve tunable quantum heat engine operation with efficiency approaching Carnot limits, revealing a fundamental efficiency-work output trade-off controlled by spin-orbit parameters.

#QuantumThermodynamics #QuantumDots #SpinOrbit
Double Quantum Dot with Rashba Spin-Orbit Coupling as a Quantum Heat Engine
arxiv.org
June 23, 2026 at 10:04 AM