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Muhammad Irfan Sarwar

Publications and source records attributed to Muhammad Irfan Sarwar.

2 recordsLinked to original sources

Staggered Potential and Elliptical Light Driven Topological Phase Transitions in $α$-$\mathcal{T}_{3}$ Lattice

We theoretically investigate the influence of hexagonal boron nitride (h-BN) on the electronic properties of an $α$-$\text{T}_3$ lattice driven by an off-resonant elliptically polarized light field. The staggered potential $M$ breaks the sublattice inversion symmetry, transforming the initial semimetal into a trivial insulator with Chern number $C = 0$. We identify a fundamental geometric singularity at $α= 1/\sqrt{2}$, independent of $M$, where the valley-resolved lower-gap threshold diverges, bounding a finite topological window where conduction--flat band inversion yields a Chern insulator with $C = 1$ carried by the flat band. Increasing the drive further closes the lower gap at the $K'$ valley, transferring the index to the valence band so that the flat band becomes trivial while the system remains $C = 1$. For $α> 1/\sqrt{2}$ the lower gap closes at finite intensity, allowing a transition to $C = 2$ as the dice limit ($α= 1$) is approached. The topological phases are characterized by quantized anomalous Hall plateaus at $σ_{xy} = e^2/h$ ($C = 1$) and $σ_{xy} = 2e^2/h$ ($C = 2$). The $C = 1$ plateau sits in a narrow gap and is the most fragile, while the $C = 2$ plateau is protected by a wider gap and remains robust to room temperature. A highly asymmetric thermoelectric Seebeck response further serves as an experimental fingerprint of each phase, providing a realistic framework for realizing stable high-Chern-number phases in substrate-supported $α$-$\text{T}_3$ materials.

cond-mat.mes-hall

Rashba Spin Demons in Two-Dimensional d-Wave Altermagnets and their Electrostatic Contro

Spin demons in d-wave altermagnets are acoustic collective excitations produced by nearly out-ofphase motion of spin-split quasiparticle populations. We identify a new mode, Rashba spin demon mode, in 2D d-wave altermagnets in the presence of Rashba Spin-Orbit Coupling (RSOC). The pristine spin demon mode in altermagnets, without RSOC, is a charge-dark excitation which is invisible to charge-sensitive probes. We show that Rashba spin demon mode is a spin-dominated acoustic mode that is distinct from the pristine mode and has a finite charge density spectral weight. RSOC rotates the quasiparticle spin texture in momentum space, generating mixed charge-spin coherence factors that give the longitudinal spin pole a charge residue. We also show that a nearby metallic gate provides a complementary electrostatic knob by screening the Coulomb interaction and tuning the pole dispersion and linewidth. Within a charge-spin random-phase approximation, we identify regimes where the Rashba mode is underdamped, charge visible, and still predominantly longitudinal-spin-like. Our results establish RSOC and electrostatic screening as complementary controls for tuning the spin and charge character of altermagnetic spin demons and making them accessible to charge probes without destroying their spin-dominated character.

cond-mat.mes-hall