Anomalous Nernst effect in a microfabricated thermoelectric element made of chiral antiferromagnet Mn3Sn

作者:Narita Hideki*; Ikhlas Muhammad; Kimata Motoi; Nugroho Agustinus Agung; Nakatsuji Satoru; Otani YoshiChika
来源:Applied Physics Letters, 2017, 111(20): 202404.
DOI:10.1063/1.5000815

摘要

Toward realizing a thermopile made of the chiral anti-ferromagnet Mn3Sn, focused ion beam (FIB) lithography was employed to microfabricate a thermoelectric element consisting of a Ta/Al2O3/Mn3Sn layered structure. In this device, the Ta layer acts as a heater producing Joule heat diffusing across the Al2O3 insulating layer into the thin Mn3Sn layer. The measured Nernst signal exhibits a clear hysteresis in an applied temperature gradient and magnetic field at 300 K, and its magnitude is proportional to the square of the electrical current applied to the Ta heater. The spontaneous, zero field voltage signal in the device is of the order of a few mu V, which is almost the same order of magnitude as observed in the bulk single-crystal Mn3Sn under a temperature gradient. The anomalous Nernst coefficient S-ANE of the microfabricated element was determined using a temperature gradient simulated by finite-element modeling. The obtained value of S-ANE is 0.27 mu V/K, which is in good agreement with that of the reported experimental value of S-ANE (0.3 mu V/K) for bulk singlecrystal Mn3Sn. This result indicates that FIB microfabrication does not significantly alter the thermoelectric properties of bulk Mn3Sn. As the chiral antiferromagnet produces almost no stray field, our study opens the avenue for the fabrication of an efficient thermopile by densely packing the microfabricated antiferromagnetic elements. Published by AIP Publishing.

  • 出版日期2017-11-13
  • 单位RIKEN