4.2 Article

Nernst and Ettingshausen effects in the Laughlin geometry

Journal

PHYSICAL REVIEW RESEARCH
Volume 3, Issue 1, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevResearch.3.013140

Keywords

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Funding

  1. European Union's Horizon 2020 research and innovation program [731976]
  2. National Research Foundation of Ukraine [2020.02/0051]
  3. Leading Innovative and Entrepreneur Team Introduction Program of Zhejiang [041020100118, 2018R01002]

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The study proposes an ideal reversible thermodynamic cycle visualization of the Nernst effect in Laughlin geometry, expressing the corresponding values of off-diagonal thermoelectric coefficients through the ratio of entropy budget per magnetic flux. The research enlightens the profound thermodynamic origin of the relation between the Nernst effect and magnetization currents.
The ideal reversible thermodynamic cycle visualization of the Nernst effect in Laughlin geometry, excluding the kinetic contribution, is proposed. The Ettingshausen effect is also treated in the fashion using the reverse cycle. The corresponding values of the off-diagonal thermoelectric coefficients are expressed through the ratio of the entropy budget per magnetic flux. Our approach enlightens the profound thermodynamic origin of the relation between the Nernst effect and magnetization currents.

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