collaborators

5 papers

physics.optics2026

Plasmonic Spin Meron Lattices with Height-Sensitive Topology Evolution

Anand Hegde, Komal Gupta, Chen-Bin Huang

We demonstrate height-controlled topological switching of plasmonic spin meron lattices above a metallic square coupling structure under circularly polarized illumination. Near the…

physics.optics2025

Advancing Plasmonic Computing with Single-Beam Logic Primitives

Komal Gupta, Anand Hegde, Chen-Bin Huang

Plasmonic logic circuits combine ultrafast operation with nanoscale integration, making them a strong candidate for next-generation optical computing. Realizing this potential, how…

physics.optics2025

Phase Matched Plasmonic Transmission Lines for Cascaded Second-Harmonic Generation as a Pathway to Nonlinear Logic Circuits

Komal Gupta, Anand Hegde, Xiaofei Wu +2

In nonlinear nanophotonics, cascaded second-harmonic generation (SHG) in pure plasmonic waveguides for sequential signal transformation and complex on-chip functionality remains a…

physics.optics2025

Geometry-Driven Lattice of Photonic Spin-Meron Tubes in Free Space

Anand Hegde, Komal Gupta, Yanan Dai +1

We theoretically demonstrate the first photonic spin-meron tube lattice in free space using spin-angular momentum vectors. Square-block diffraction creates -symmetric beams…

math.CO2025

Erdős-Gyárfás conjecture on graphs without long induced paths

Anand Shripad Hegde, R. B. Sandeep, P. Shashank

Erdős and Gyárfás conjectured in 1994 that every graph with minimum degree at least 3 has a cycle of length a power of 2. In 2022, Gao and Shan (Graphs and Combinatorics) proved…