Focus Session: Thermoelectric and Coupled Phenomena
FOCUS · J12 ·
Presentations
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Colossal enhancement of the Seebeck coefficient in FeSb$_{2}$ driven by nearly ballistic phonons
ORAL
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Authors
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Hidefumi Takahashi
- Nagoya University
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Ryuji Okazaki
- Nagoya University
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Hiroki Taniguchi
- Nagoya University
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Ichiro Terasaki
- Nagoya University
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ABSTRACT WITHDRAWN
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Improved Thermoelectric Performance via Piezoelectric Interaction
ORAL
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Authors
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David Montgomery
- Wake Forest University
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The Role of Minority Carriers in Thermoelectrics: Why Half Heusler ZrNiSn is a good n-type but poor p-type Thermoelectric
COFFEE_KLATCH · Invited
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Authors
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G. Jeffrey Snyder
- California Institute of Technology
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The effect of thermoelectric contributions in switching dynamics and resistance drift of Phase Change Memory devices
ORAL
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Authors
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Egecan Cogulu
- Bogazici University
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Ibrahim Cinar
- Bogazici University
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Aisha Gokce
- Bogazici University
- Bogazici Univ
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Barry Stipe
- HGST, A Western Digital Company
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Jordan A. Katine
- HGST, A Western Digital Company
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Gulen Aktas
- Bogazici University
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Ozhan Ozatay
- Bogazici University
- Bogazici Univ
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Thermopower of few-electron quantum dots with Kondo correlations
ORAL
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Authors
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Lvzhou Ye
- University of Science and Tech of China
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Detection of Carrier Scattering Mechanism by Thermopower
ORAL
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Authors
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Shuang Tang
- Massachusetts Inst of Tech-MIT
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Mildred Dresselhaus
- Massachusetts Inst of Tech-MIT
- MIT
- Massachusetts Institute of Technology
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Magnon drag thermopower and thermomagnetic properties of single-crystal iron
ORAL
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Authors
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Sarah J. Watzman
- Department of Mechanical and Aerospace Engineering, The Ohio State University, Columbus, Ohio, USA
- Department of Mechanical and Aerospace Engineering, Ohio State University - Columbus, Ohio 43210, USA
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Hyungyu Jin
- Department of Mechanical and Aerospace Engineering, The Ohio State University, Columbus, Ohio, USA
- Department of Mechanical and Aerospace Engineering, The Ohio State University, Columbus, OH
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Joseph P. Heremans
- Department of Mechanical and Aerospace Engineering and Department of Physics, The Ohio State University, Columbus, Ohio, USA
- Department of Physics and Department of Mechanical and Aerospace Engineering, Ohio State University - Columbus, Ohio 43210, USA
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Enhancement of thermoelectric performance in composite materials through locally-modulated doping
ORAL
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Authors
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Michael J. Adams
- Department of Mechanical Engineering, The Ohio State University
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Hyungyu Jin
- Department of Mechanical Engineering, The Ohio State University
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Joseph P. Heremans
- Department of Mechanical Engineering and Department of Physics, The Ohio State University
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Next Generation Electrocaloric and Pyroelectric Materials for Solid State Electrothermal Interconversion
ORAL
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Authors
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S. Pamir Alpay
- University of Connecticut - Storrs
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Joseph V. Mantese
- United Technologies Research Center
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Susan Trolier-McKinstry
- Penn State University
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Qiming Zhang
- Penn State University
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Roger W. Whatmore
- Imperial College London
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Diameter Dependent Thermoelectric Properties of Individual SnTe Nanowires
ORAL
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Authors
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E.Z. Xu
- Indiana University
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Z. Li
- Indiana University; Los Alamos National Laboratory
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J. Martinez
- New Mexico State University
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N. Sinitsyn
- Los Alamos National Laboratory
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H. Htoon
- Los Alamos National Laboratory
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N. Li
- Los Alamos National Laboratory
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B. Swartzentruber
- Sandia National Laboratories
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J. Hollingsworth
- Los Alamos National Laboratory
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J. Wang
- Los Alamos National Laboratory
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S.X. Zhang
- Indiana University
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ABSTRACT WITHDRAWN
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Towards a high-current triode thermoelectronic generator
ORAL
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Authors
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Gerwin Hassink
- Max Planck Institute for Solid State Research, Stuttgart, Germany
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Patrick Herlinger
- Max Planck Institute for Solid State Research, Stuttgart, Germany
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Wolfgang Braun
- Max Planck Institute for Solid State Research, Stuttgart, Germany
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Cyril Stephanos
- Max Planck Institute for Solid State Research, Stuttgart, Germany
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Jurgen Smet
- Max Planck Institute for Solid State Research, Stuttgart, Germany
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Jochen Mannhart
- Max Planck Institute for Solid State Research, Stuttgart, Germany
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