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Thermal Spin Transport and Thermomagnetics

ORAL · Y56 · ID: 46897






Presentations

  • Observation of the spin Seebeck effect in a paramagnetic insulator VO<sub>2</sub>

    ORAL

    Presenters

    • Renjie Luo

      Rice University

    Authors

    • Renjie Luo

      Rice University

    • Liyang Chen

      Rice University, Rice Univ

    • Xuanhan Zhao

      Rice University

    • Douglas Natelson

      Rice University

    • Henry Navarro

      University of California, San Diego, University of California San Diego

    • Ivan K Schuller

      University of California, San Diego, University of California San Diego

    View abstract →

  • Magnon shot noise in a longitudinal spin Seebeck device

    ORAL

    Presenters

    • Douglas Natelson

      Rice University

    Authors

    • Douglas Natelson

      Rice University

    • Xuanhan Zhao

      Rice University

    • Liyang Chen

      Rice University, Rice Univ

    • Renjie Luo

      Rice University

    • Changjiang Liu

      Argonne National Laboratory

    • Deshun Hong

      Argonne National Laboratory

    • Anand Bhattacharya

      Argonne National Laboratory

    View abstract →

  • Longitudinal spin Seebeck effect in thulium iron garnet (TmIG) thin films

    ORAL

    Presenters

    • Amit Chanda

      University of South Florida, Univ of South Florida

    Authors

    • Amit Chanda

      University of South Florida, Univ of South Florida

    • Christian Holzmann

      University of Augsburg

    • Johannes Seyd

      University of Augsburg

    • Manfred Albrecht

      University of Augsburg

    • Manh-Huong Phan

      Univ of South Florida, University of South Florida

    • Hariharan Srikanth

      Univ of South Florida

    View abstract →

  • Spin fluctuation induced spin Seebeck effect near the Neel temperature in antiferromagnetic thin films

    ORAL

    Presenters

    • Josiah Keagy

      University of California Riverside, University of California, Riverside

    Authors

    • Josiah Keagy

      University of California Riverside, University of California, Riverside

    • Wei Yuan

      University of California, Riverside

    • Yawen Liu

      University of California, Riverside

    • Jing Shi

      University of California, Riverside

    View abstract →

  • Spin Seebeck effect in the multifunctional ferrimagnet Ga<sub>0.6</sub>Fe<sub>1.4</sub>O<sub>3</sub>

    ORAL

    Publication: S Homkar, J.C Rojas-Sánchez et al. Spin Current Transport in Hybrid Pt/Multifunctional Magnetoelectric Ga0.6Fe1.4O3 Bilayers; ACS Appl. Electro. Materials 2021 https://doi.org/10.1021/acsaelm.1c00586<br>A. Anandon, J.C Rojas-Sánchez et al. Spin Seebeck effect in the multifunctional ferrimagnet Ga0.6Fe1.4O3 (to be submitted)

    Presenters

    • Juan-Carlos Rojas-Sanchez

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France, University of Lorraine, France, Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine

    Authors

    • Juan-Carlos Rojas-Sanchez

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France, University of Lorraine, France, Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine

    • Alberto Anadon

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France

    • Elodie Martin

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France

    • Suvidyakumar Homkar

      IPCMS, CNRS, Université Strassbourg, France

    • Benjamin Meunier

      IPCMS, CNRS, Université Strassbourg, France

    • Heloise Damas

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France

    • Christophe Lefevre

      IPCMS, CNRS, Université Strassbourg, France

    • Francois Roulland

      IPCMS, CNRS, Université Strassbourg, France

    • Carsten Dubs

      INNOVENT e.V. Technologieentwicklung, Jena, Germany

    • Olivier Copie

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France

    • Rafael Ramos

      CIQUS, Santiago de Compostela, Spain

    • Daniele Preziosi

      IPCMS, CNRS, Université Strassbourg, France

    • Nathalie Viart

      IPCMS, CNRS, Université Strassbourg, France

    • Sebastien Petit-Watelot

      Institut Jean Lamour, CNRS UMR 7198, Université de Lorraine, France

    View abstract →

  • Origins of transverse voltages generated by applied thermal gradients and applied electric fields in ferrimagnetic-insulator/heavy-metal bilayers

    ORAL

    Presenters

    • Rakshit Jain

      Cornell University

    Authors

    • Rakshit Jain

      Cornell University

    • ARNAB BOSE

      Cornell University

    • Jackson J Bauer

      Massachusetts Institute of Technology MIT

    • Robert A Buhrman

      Cornell University

    • Caroline A Ross

      Massachusetts Institute of Technology MIT

    • Daniel C Ralph

      Cornell University

    View abstract →

  • Thermopower and Self-consistent Spin-Wave Theory for MnTe

    ORAL

    Publication: [1] V. Yu. Irkhin, A. A. Katanin, and M. I. Katsnelson, Self-consistent spin-wave theory of layered Heisenberg magnets, Phys. Rev. B. 60, 1082 (1999).<br>[2] Zheng, Yuanhua, et al. Paramagnon drag in high thermoelectric figure of merit Li-doped MnTe, Science advances 5.9 (2019): eaat9461.<br>[3] Sarah J. Watzman, Rembert A. Duine, Yaroslav Tserkovnyak, Stephen R. Boona, Hyungyu Jin, Arati Prakash, Yuanhua Zheng, and Joseph P. Heremans, Magnon-drag thermopower and Nernst coefficient in Fe, Co, and Ni, Phys. Rev. B 94, 144407 (2016).<br>[4] Franz Demmel and Tapan Chatterji, Persistent spin waves above the Néel temperature in YMnO3, Phys. Rev. B 76, 212402 (2007).<br>[5] D.P. Arovas and A. Auerbach, Functional integral theories of low-dimensional quantum Heisenberg models, Phys. Rev. B 38, 316 (1988).<br>[6] D.J. Yoshioka, Boson Mean Field Theory of the Square Lattice Heisenberg Model, J. Phys. Soc. Jpn. 58, 3733 (1989).<br>[7] M. Takahashi, Modified spin-wave theory of a square-lattice antiferromagnet, Phys. Rev. B 40, 2494 (1989).<br>[8] V. Yu. Irkhin, A. A. Katanin, Critical behavior and the Néel temperature of quantum quasi-two-dimensional Heisenberg antiferromagnets, Phys. Rev. B. 55, 12318 (1997).

    Presenters

    • Morteza Jazandari

      Institute for Advanced Studies in Basic Sciences (IASBS)

    Authors

    • Morteza Jazandari

      Institute for Advanced Studies in Basic Sciences (IASBS)

    • Jahanfar Abouie

      Institute for Advanced Studies in Basic Sciences (IASBS)

    • Daryoosh Vashaee

      North Carolina State University, North Carolina State U

    View abstract →