Nernst–Ettingshausen effect in thin Pt and W films at low temperatures

Author:

Luo Renjie1ORCID,Legvold Tanner J.1ORCID,Chen Liyang2ORCID,Natelson Douglas13ORCID

Affiliation:

1. Department of Physics and Astronomy, Rice University 1 , Houston, Texas 77005, USA

2. Applied Physics Graduate Program, Smalley Curl Institute, Rice University 2 , Houston, Texas 77005, USA

3. Department of Electrical and Computer Engineering and Department of Materials Science and NanoEngineering, Rice University 3 , Houston, Texas 77005, USA

Abstract

As spin caloritronic measurements become increasingly common techniques for characterizing material properties, it is important to quantify potentially confounding effects. We report measurements of the Nernst–Ettingshausen response from room temperature to 5 K in thin film wires of Pt and W, metals commonly used as inverse spin Hall detectors in spin Seebeck characterization. Johnson–Nyquist noise thermometry is used to assess the temperature change in the metals with heater power at low temperatures, and the thermal path is analyzed via finite-element modeling. The Nernst–Ettingshausen response of W is found to be approximately temperature-independent, while the response of Pt increases at low temperatures. These results are discussed in the context of theoretical expectations and the possible role of magnetic impurities in Pt.

Funder

National Science Foundation

U.S. Department of Energy

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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