Author:
Bhardwaj Vishal,Bhattacharya Anupam,Srivastava Shivangi,Khovaylo Vladimir V.,Sannigrahi Jhuma,Banerjee Niladri,Mani Brajesh K.,Chatterjee Ratnamala
Abstract
AbstractHalf-Heusler compounds exhibit a remarkable variety of emergent properties such as heavy-fermion behaviour, unconventional superconductivity and magnetism. Several of these compounds have been predicted to host topologically non-trivial electronic structures. Remarkably, recent theoretical studies have indicated the possibility to induce non-trivial topological surface states in an otherwise trivial half-Heusler system by strain engineering. Here, using magneto-transport measurements and first principles DFT-based simulations, we demonstrate topological surface states on strained [110] oriented thin films of YPdBi grown on (100) MgO. These topological surface states arise in an otherwise trivial semi-metal purely driven by strain. Furthermore, we observe the onset of superconductivity in these strained films highlighting the possibility of engineering a topological superconducting state. Our results demonstrate the critical role played by strain in engineering novel topological states in thin film systems for developing next-generation spintronic devices.
Funder
Ministry of Education and Human Resources Development
EPSRC
SPARC
Publisher
Springer Science and Business Media LLC
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