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Cosmic whirls in rust
Credit: R Shetty, K Jani, H Jani

Hariom Jani

Royal Society - University Research Fellow

Research theme

  • Quantum materials

Sub department

  • Condensed Matter Physics

Research groups

  • Oxide electronics
  • Designer Quantum Materials for Devices
hariom.jani@physics.ox.ac.uk
Clarendon Laboratory, room 276, Level 2
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Computing with rust

Harnessing whirls in iron-oxide

Where鈥檚 the very last place you would look if you wanted a new material to make computer memory? The compost heap or the scrap yard, probably. So who came up with the idea of using rust? Singapore鈥檚 Hariom Jani did. And he鈥檚 here to tell you it鈥檚 the futu

Revealing Emergent Magnetic Charge in an Antiferromagnet with Diamond Quantum Magnetometry

(2023)

Authors:

Anthony KC Tan, Hariom Jani, Michael H枚gen, Lucio Stefan, Claudio Castelnovo, Daniel Braund, Alexandra Geim, Matthew SG Feuer, Helena S Knowles, Ariando Ariando, Paolo G Radaelli, Mete Atat眉re

Spatially reconfigurable topological textures in freestanding antiferromagnetic nanomembranes

(2023)

Authors:

Hariom Jani, Jack Harrison, Sonu Hooda, Saurav Prakash, Proloy Nandi, Junxiong Hu, Zhiyang Zeng, Jheng-Cyuan Lin, Ganesh ji Omar, J枚rg Raabe, Simone Finizio, Aaron Voon-Yew Thean, A Ariando, Paolo G Radaelli

Experimental Evidence of t2g Electron-Gas Rashba Interaction Induced by Asymmetric Orbital Hybridization

Physical Review Letters American Physical Society (APS) 129:18 (2022) 187203

Authors:

GJ Omar, WL Kong, H Jani, MS Li, J Zhou, ZS Lim, S Prakash, SW Zeng, S Hooda, T Venkatesan, YP Feng, SJ Pennycook, L Shen, A Ariando

Route towards stable homochrial topological textures in A-type antiferromagnets

Physical Review B American Physical Society 105 (2022) 224424

Authors:

Jack Harrison, Hariom Jani, Paolo G Radaelli

Abstract:

Topologically protected whirling magnetic textures could emerge as data carriers in next-generation post-Moore computing. Such textures are abundantly observed in ferromagnets (FMs); however, their antiferromagnetic (AFM) counterparts are expected to be even more relevant for device applications, as they promise ultrafast, deflection-free dynamics while being robust against external fields. Unfortunately, such textures have remained elusive; hence identifying materials hosting them is key to developing this technology. Here, we present comprehensive micromagnetic and analytical models investigating topological textures in the broad material class of A-type antiferromagnets, specifically focusing on the prototypical case of α-Fe2O3—an emerging candidate for AFM spintronics. By exploiting a symmetry-breaking interfacial Dzyaloshinskii-Moriya interaction (iDMI), it is possible to stabilize a wide topological family, including AFM (anti)merons, bimerons, and the hitherto undiscovered AFM skyrmions. While iDMI enforces homochirality and improves the stability of these textures, the widely tunable anisotropy and exchange interactions enable precise control of their core dimensions. We then present a unifying framework to model the scaling of texture sizes based on a simple dimensional analysis. As the parameters required to host and tune homochiral AFM textures may be obtained by rational materials design of α-Fe2O3, it could emerge as a promising platform to initiate AFM topological spintronics.

A cost-effective quantum eraser demonstration

(2022)

Authors:

Aarushi Khandelwal, Jit Bin Joseph Tan, Tze Kwang Leong, Yarong Yang, T Venkatesan, Hariom Jani

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