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Investigation of spin dynamics across quantum critical point in Co substitute...
Investigation of correlated behaviour in Ce based intermetallics has continued to fascinate researchers. These compounds exhibit novel ground states depending on the strength of... -
Investigating the superconducting and magnetic properties of a novel quasi-on...
A2Mo3As3 (A = alkali metal) is a brand-new novel family of molybdenum arsenide based quasi-one-dimensional (Q1D) superconductors with a transition temperature between 10.4 to... -
Following the Evolution of Spin Dynamics in the Quantum Spin Liquid Candidate...
Zn-doped barlowite, ZnxCu4-x(OH)6FBr, is a new experimental realisation of an S = 1/2 kagome antiferromagnet in which the ground state may be tuned from a Néel ordered state to... -
Probing time-reversal-symmetry breaking superconductivity in LaPt3P
Recently, a new family of ternary platinum phosphide superconductors have been synthesised with the chemical formula APt3P (A = Sr, Ca, and La, with Tcs of 8.4, 6.6, and 1.5 K,... -
Understanding the superconductivity in a designer high entropy alloy
Understanding superconductivity has been a goal of condensed matter scientists since its discovery. However, there has been a continual discovery of new materials that challenge... -
Magnetic Order in the Pyrochlore Phase of Gd2Zr2O7
Along with the titanate and stannate materials, Gadolinium Zirconate, Gd2Zr2O7, makes up a series of model pyrochlore systems characterized by a Heisenberg antiferromagnetic... -
The role of spin-orbit coupling for the superconducting state in TrIrSi (Tr =...
Spinorbit coupling (SOC) is a fundamental interaction in solids that can induce unusual physical properties, from topologically non-trivial insulating states to unconventional... -
Muon spin relaxation study on cobalt arsenides ACo2As2 (A = Ca, Sr and Ba)
Recent investigations of physical properties of ACo2As2 (A = Ca, Sr, Ba) indicate that Co-based arsenides could be a potential parent compound like the parent AFe2As2. While... -
µSR studies of the superconducting and magnetic properties of FeSe1-xSx
FeSe1-xSx is an important model system for investigating the relationship between superconductivity and nematicity. The nematicity can be suppressed systematically by the... -
A μSR study of non-centrosymmetric superconductor Zr3Ir
We propose to investigate the effects of the electron- phonon interaction on the time reversal symmetry breaking phenomenon of non-cetrosymmetric superconductors. μSR is... -
µSR Study of Topological Superconductor PbTaSe2
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Set up HELIOC Fly-Path
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µSR Sudy on Ternary Silicides LaNiSi and LaPtSi
In this proposal we wish to investigate the detailed superconducting properties of two non-centrosymmetric ternary silicides, LaNiSi and LaPtSi. We plan to investigate the time... -
Understanding the superconductivity in YbSb2
The number of Type I binary of ternary alloys is small. Recently, YbSb2 is reported to be a type I superconductor. However, it has an unusual phase diagram, which might show a... -
MuSR studies of the electronic properties of hyperexpanded fullerides close t...
The fcc polymorph of the hyperexpanded fulleride Cs3C60 can be driven to a bulk suprconducting state without symmetry change by the application of pressure. Its Tc passes... -
muSR studies of AF/SC/normal phase interplays in La2-xSrxCuO4 and Ba(Fe,Ni)2As2
We propose muSR studies on superfluid density in the overdoped La2-xSrxCuO4 (LSCO). The Hayden group (Bristol) has been growing high-quality LSCO single crystals, and performed... -
Tunable algebraic correlations and Kasteleyn transition in kagome ice
We propose to continue our search for the Kasteleyn transition in the kagome ice phase of the spin ice Ho2Ti2O7. The experiment requires the applied magnetic field to be... -
Is the electronic ground state of magnetically frustrated fcc Cs3C60 a spin l...
We have been recently successful in isolating the fcc polymorph of the key hyperexpandedfulleride Cs3C60 - this phase can be driven from an insulating to a bulk suprconducting... -
Completing the phase diagram of a 2D molecular antiferromagnet
Low-dimensional quantum magnetism continues to be of great theoretical and experimental interest as reduced dimensionality supports strong quantum fluctuations which can result... -
Quantum Spin Liquid in a triangular rare-earth based magnet
The rise of quantum materials observed in the past decades has been a source of great excitement for condensed matter scientists, with the flourishing of new concepts and...
