Ru-Pan Wang
Utrecht University
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Publication
Featured researches published by Ru-Pan Wang.
Nature Communications | 2017
Hsiao-Yu Huang; Z. Y. Chen; Ru-Pan Wang; F. M. F. de Groot; W. B. Wu; Jun Okamoto; Ashish Chainani; Ankita Singh; Z. Y. Li; Jianshi Zhou; Horng-Tay Jeng; G. Y. Guo; Je Geun Park; L. H. Tjeng; Chuangtian Chen; Di Jing Huang
The first known magnetic mineral, magnetite, has unusual properties, which have fascinated mankind for centuries; it undergoes the Verwey transition around 120 K with an abrupt change in structure and electrical conductivity. The mechanism of the Verwey transition, however, remains contentious. Here we use resonant inelastic X-ray scattering over a wide temperature range across the Verwey transition to identify and separate out the magnetic excitations derived from nominal Fe2+ and Fe3+ states. Comparison of the experimental results with crystal-field multiplet calculations shows that the spin–orbital dd excitons of the Fe2+ sites arise from a tetragonal Jahn-Teller active polaronic distortion of the Fe2+O6 octahedra. These low-energy excitations, which get weakened for temperatures above 350 K but persist at least up to 550 K, are distinct from optical excitations and are best explained as magnetic polarons.
Journal of Physical Chemistry C | 2017
Ru-Pan Wang; Boyang Liu; R. J. Green; Mario Ulises Delgado-Jaime; Mahnaz Ghiasi; Thorsten Schmitt; Matti M. van Schooneveld; Frank M. F. de Groot
We show that with 2p3d resonant inelastic X-ray scattering (RIXS) we can accurately determine the charge-transfer parameters of CoF2, CoCl2, CoBr2, and CoS. The 160 meV resolution RIXS results are compared with charge-transfer multiplet calculations. The improved resolution and the direct observation of the crystal field and charge-transfer excitations allow the determination of more accurate parameters than could be derived from X-ray absorption and X-ray photoemission, both limited in resolution by their lifetime broadening. We derive the crystal field and charge-transfer parameters of the Co2+ ions, which provides the nature of the ground state of the Co2+ ions with respect to symmetry and hybridization. In addition, the increased spectral resolution allows the more accurate determination of the atomic Slater integrals. The results show that the crystal field energy decreases with increasing ligand covalency. The L2 edge RIXS spectra show that the intensity of the (Coster–Kronig induced) nonresonant X-ray emission is a measure of ligand covalency.
Journal of Physical Chemistry C | 2016
Mahnaz Ghiasi; Mario Ulises Delgado-Jaime; Azim Malekzadeh; Ru-Pan Wang; Piter S. Miedema; Martin Beye; Frank M. F. de Groot
Inorganic Chemistry | 2016
Boyang Liu; Ru-Pan Wang; Elliot N. Glass; Craig L. Hill; Tanja Cuk; Jun Okamoto; D. J. Huang; Matti M. van Schooneveld; Frank M. F. de Groot
Physical Chemistry Chemical Physics | 2018
Boyang Liu; Elliot N. Glass; Ru-Pan Wang; Yi-Tao Cui; Yoshihisa Harada; D. J. Huang; S. Schuppler; Craig L. Hill; Frank M. F. de Groot
Physical Review B | 2018
Ru-Pan Wang; Atsushi Hariki; Andrii Sotnikov; Federica Frati; Jun Okamoto; Hsiao-Yu Huang; Amol Singh; D. J. Huang; Keisuke Tomiyasu; Chao-Hung Du; Jan Kuneš; Frank M. F. de Groot
Bulletin of the American Physical Society | 2018
Amol Singh; Hsiao-Yu Huang; Y. Chin; Yen-Fa Liao; Ting-Chun Huang; Jun Okamoto; W. B. Wu; Hong-Ji Lin; Ku-Ding Tsuei; Ru-Pan Wang; Frank M. F. de Groot; C. N. Kuo; Hongjian Liu; ChinShan Lue; C. T. Chen; D. J. Huang; Ashish Chainani
Physical Review B | 2017
Boyang Liu; Cinthia Piamonteze; Mario Ulises Delgado-Jaime; Ru-Pan Wang; Jakoba Heidler; Jan Dreiser; Rajesh V. Chopdekar; Frithjof Nolting; Frank M. F. de Groot
arXiv: Strongly Correlated Electrons | 2015
Hsiao-Yu Huang; Z. Y. Chen; Ru-Pan Wang; F. M. F. de Groot; W. B. Wu; Jun Okamoto; Jianshi Zhou; Horng-Tay Jeng; G. Y. Guo; Je-Geun Park; L. H. Tjeng; D. J. Huang
Bulletin of the American Physical Society | 2015
Jun Okamoto; W. B. Wu; Hirofumi Ishii; Kang-Li Yu; Nozomu Hiraoka; Ru-Pan Wang; Deng-Ming Juo; Jiunn Chen; Viveka Singh; G. Y. Guo; Qinghui Jiang; Sang-Wook Cheong; Ku-Ding Tsuei; D. J. Huang