English

Thermo-remnant magnetization assisted switching response

Materials Science 2019-02-20 v1

Abstract

Here, we describe the prototype for precisely scaled temperature assisted magnetic recording scheme utilizing the characteristics of thermo-remnant magnetization (TRM) in bulk SmCrO3_3 as a memory media. The TRM response can be exploited in completely reversible bipolar switching performances either by tuning the temperature only across a sharp thermal window ΔTw\Delta T_w = 10 K, or annealing isothermally with a single pulse of field \ge 0.1 T by flipping the direction of magnetization from 0o^o to 180o^o. The microscopic mechanism of TRM in SmCrO3_3 is explored by means of diffuse scattering using high energy λ=0.4997A˚\lambda = 0.4997\AA neutrons and thermal variation of coercivity in TN±ΔTT_N \pm \Delta T range. It is noticed that the huge heterogeneity reflected by the estimated average spin-spin correlation length of the fluctuations in microscopic spin configuration being \le 90 A˚\AA and efficient domain wall pinning effect as the defect dimensions are approximately twice to the domain wall width, governs the peculiar characteristic of TRM in SmCrO3_3.

Keywords

Cite

@article{arxiv.1902.06911,
  title  = {Thermo-remnant magnetization assisted switching response},
  author = {M. Tripathi},
  journal= {arXiv preprint arXiv:1902.06911},
  year   = {2019}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-23T07:44:30.424Z