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- Resolving the electronic ground state of La3Ni2O7-δ films . . .
Through X-ray absorption spectroscopy, we reveal the influence of oxygen ligands on the electronic ground states of the Ni ions, displaying a charge transfer nature akin to cuprate but with
- Resolving the Electronic Ground State of La3Ni2O7-δ Films
Through X-ray absorption spectroscopy, we have uncovered the crucial influence of oxygen ligands on the electronic ground states of the Ni ions, displaying a charge transfer nature akin to cuprate but with distinct orbital configurations
- Resolving the electronic ground state of La lt;SUB gt;3 lt; SUB gt;Ni lt;SUB gt;2 lt; SUB gt;O . . .
Through X-ray absorption spectroscopy, we reveal the influence of oxygen ligands on the electronic ground states of the Ni ions, displaying a charge transfer nature akin to cuprate but with distinct orbital configurations
- Incommensurate spin fluctuations and competing pairing symmetries in
Our study uses a multiorbital Hubbard model, incorporating all Ni 3 𝑑 and O 2 𝑝 states
- Publication - iphy. ac. cn
Xiaolin Ren, Ronny Sutarto, Xianxin Wu, Jianfeng Zhang, Hai Huang, Tao Xiang, Jiangping Hu, Riccardo Comin, X J Zhou Zhihai Zhu “ Resolving the electronic ground state of La3Ni2O7-δ films”, Communications Physics 8, 52 (2025)
- Communications in Theoretical Physics - IOPscience
Communications in Theoretical Physics reports important new theoretical developments in many different areas of physics and interdisciplinary research It is published by IOP Publishing on behalf of the Institute of Theoretical Physics, Chinese Academy of Sciences and the Chinese Physical Society
- Articles in 2025 | Communications Physics - Nature
Synchronization of nanoscale photonic devices generating pulses is of prime importance for on-chip communications and analog all-optical machines
- Phys. org - Communications Physics
Communications Physics is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of physics
- Resolving the Electronic Ground State of La3Ni2O7-δ Films,arXiv - PHYS . . .
Through X-ray absorption spectroscopy, we have uncovered the crucial influence of oxygen ligands on the electronic ground states of the Ni ions, displaying a charge transfer nature akin to cuprate but with distinct orbital configurations
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