#spin-orbitronics
🔬✨ 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
OBELIX breakthrough!
We've shown how crystal symmetry shapes orbital angular momentum transport—revealing how materials can carry angular momentum beyond spin.

This could reshape the future of spintronics & orbitronics.
📖 Gao et al., Nature Physics 2024
#OBELIX #Orbitronics #Spintronics #HorizonEU
May 27, 2025 at 7:02 AM
Electrons do more than carry charge — they spin, and they orbit. This orbital angular momentum is a hidden quantum property… and it might revolutionize electronics.

It's called orbitronics, and it could be the future of green electronics.

#OBELIXProject #Orbitronics #EUfunded #Electronics
September 16, 2025 at 7:02 AM
#PhD #position at NTU Singapore buff.ly/TdxaBO6 #Spin-orbitronics and low-dimensional #magnetic systems. #spintronics #magnetism
Job market - EMA - PhD: Spin-orbitronics and low-dimensional magnetic systems
[ All offers ]
buff.ly
July 30, 2025 at 3:09 PM
#PhD #position at Max Planck Institute of Microstructure Physics https://buff.ly/3CU9Kbx Oxide-based two-dimensional electron and hole gases for spin-orbitronics #spinorbitronics #spintronics
EMA Job market - PhD: Oxide-based two-dimensional electron and hole gases for spin-orbitronics
[ All offers ]
buff.ly
February 17, 2025 at 8:41 AM
Like their spin counterparts, orbital currents could be useful for transmitting information in so-called orbitronic devices, but these currents were thought to struggle to cross material interfaces. New research has dispelled that expectation.
Materials Found to Be Surprisingly Transparent to Orbital Currents
Orbital currents can efficiently flow through a variety of materials—a promising result for future orbitronics devices.
physics.aps.org
September 11, 2024 at 3:12 PM
⚡ New paper about the quantitative analysis of vectorial torques in a thin Co3d ferromagnet using orbital-spin conversion.

Read Bony et al. to explore the ratio of orbital vs spin currents and more !

#OBELIXproject #EUfunded #orbitronics #spin-orbit #physics #EICpathfinder
August 18, 2026 at 7:01 AM
⚡ New paper about the spin-orbit torque relased. Read Xu et al. to explore an experimental approach based on harmonic Hall voltage techniques and more !

📕 Xu, Y., et al. Applied Physics Letters 126.20 (2025).

#OBELIXproject #EUfunded #orbitronics #spin-orbit #physics #EICpathfinder
October 28, 2025 at 8:02 AM
⚡A new theory reveals that orbital motion diffuses far more slowly than spin or charge, and that orbital + spin currents can even transform into each other.
🚀 A big step toward novel spintronic and orbitronic devices.

Read Ning et al. (2024)

#Orbitronics #Spintronics #OBELIXproject #EUfunded #EIC
September 9, 2025 at 7:41 AM
Nice perspective—what’s striking is how polarization-resolved ARPES turns orbital texture into an observable constraint, not an inferred one, which seems essential if ‘orbitronics’ is to be more than a re-labeling of spin effects.
January 18, 2026 at 12:46 AM
🌟 Join Us at SPIN & ORBIT 2025! 🌟
A week-long event uniting global experts in #spintronics and #orbitronics!

📅 31 March to 4 April 2025
📍 Donostia-San Sebastián
🎤 45 invited speakers
📣 Call for abstracts open! 👉 https://www.nanogune.eu/en/spin-orbit

@ItnSpear #SPINandORBIT2025
December 19, 2024 at 8:36 AM
Chirality isn’t just for molecules—it’s shaping future electronics.

New results from Hagiwara, Kenta, et al.(2025) show that in chiral crystals like CoSi, it’s electron orbitals—not spin—that drive exotic behaviors.

#OBELIXproject #EUfunded #Orbitronics #chirality #eicpathfinder
July 22, 2025 at 7:01 AM
Milestone achieved in orbitronics: Researchers at #MainzUniversity are the first to directly utilize orbital currents without the need for conversion of the orbital current into a spin current 👉 press.uni-mainz.de/milestone-ach…#spintronicsc#DataStorageg#physicsc#orbitronicsc#antiferromagnetsts
July 3, 2026 at 1:06 PM
⚡ New paper about carbon nanotubes and the Edelstein effect relased. Read Göbel and al. to explore how chiral CNTs exhibit chirality-induced orbital selectivity (CIOS).

📕 Göbel et al. Communications Physics, 8(1), 935.(2025)

#OBELIXproject #EUfunded #orbitronics #spin-orbit #physics #EICpathfinder
November 18, 2025 at 8:00 AM
A purely orbitronic device used orbital currents directly and produced signals 100 times stronger than a comparable spin-current system. In cobalt oxide, the interaction appears fundamentally different. doi.org/hb9fj7
Orbitronics clears key hurdle with direct orbital currents, boosting signals 100-fold
Researchers at Johannes Gutenberg University Mainz (JGU) are the first to directly utilize orbital currents without the need for conversion of the orbital current into a spin current.
phys.org
July 2, 2026 at 9:10 PM
Our July issue is delayed, but we are delighted to announce that it will contain a Focus Issue on "Beyond spintronics".

It has a Review on altermagnetic spintronics, lots of orbitronics, and a Review on polar topological textures!

www.nature.com/collections/...
Beyond spintronics
This Focus issue highlights the central role of orbital dynamics, spin arrangements and charge distributions in governing emergent phenomena in quantum ...
www.nature.com
July 13, 2026 at 4:06 PM
⚡ New paper about the adiabatic spin and orbital pumping in metallic heterostructures. Read Pezo et al. to explore the the spin and orbital densities and more !

#OBELIXproject #EUfunded #orbitronics #spin-orbit #physics #EICpathfinder
July 7, 2026 at 9:34 AM
#postdoc #position at Laboratoire Albert Fert buff.ly/SFMpBnA Spin-orbit and orbital torques; #spintronics #orbitronics #research #magnetism
November 24, 2025 at 4:45 PM
Our featured article, May 2026: Orbital Hall effect in spin-3/2 hole-doped semiconductors and its implications for orbitronics.
doi.org/10.1038/s420...
Orbital Hall effect in spin-3/2 hole-doped semiconductors and its implications for orbitronics - Communications Physics
The recent discovery of orbital torques, which employ the orbital angular momentum of Bloch electrons to switch the magnetisation of an adjacent ferromagnet, has motivated the search for orbitronic ma...
doi.org
May 31, 2026 at 7:33 PM
RF field characterization and rectification effects in spin pumping and spin-torque FMR for spin-orbitronics
https://arxiv.org/pdf/2602.14429
Melissa Yactayo, Michel Hehn, J.-C. Rojas-Sánchez, Sébastien Petit-Watelot.
https://arxiv.org/abs/2602.14429
arXiv abstract link
arxiv.org
February 17, 2026 at 4:32 AM
Modelling spin-orbitronics effects at interfaces and chiral molecules
https://arxiv.org/pdf/2502.09239
Poonam Kumari, Cyrille Barreteau, Alexander Smogunov
https://arxiv.org/abs/2502.09239
arXiv abstract link
arxiv.org
February 14, 2025 at 4:20 AM
quantum information science, and superconducting spintronics/orbitronics. We find that the superconducting 2D electron gas (2DEG) formed at EuOx/KTaO3 (110) interfaces, where the EuOx is magnetic, has a spin-texture with an [2/6 of https://arxiv.org/abs/2502.19599v1]
February 28, 2025 at 6:09 AM