Supercontinuum Generation
Mid-IR & broadband SC in chalcogenide waveguides at 4 μm and 6 μm.
Open to postdoc & assistant professor positions
I work on how light behaves inside chalcogenide waveguides: supercontinuum generation, dispersion, and sensors. Lately I'm pulling machine learning into the optics toolbox.

I'm a physicist. Most of my days go into coaxing light through chalcogenide waveguides: engineering dispersion, generating supercontinua, and occasionally breaking things in FDTD simulations so they don't break in the lab.
My Ph.D. at VIT-AP University was on mid-infrared supercontinuum generation and photonic device design. These days I am also working with physics-informed machine learning (PINNs) and inverse design for structured light in fiber systems.
Mid-IR & broadband SC in chalcogenide waveguides at 4 μm and 6 μm.
Split-core, inverted rib-core, D-shaped and slot architectures.
Tamm-Fano resonance sensors for glucose & refractive-index sensing.
PINN-based inverse design for structured light in fiber systems.
OAM, Laguerre-Gaussian modes, multimode & few-mode fiber optics.
High-dimensional quantum information and fiber-based quantum networks.
Supercontinuum review published in Applied Materials Today.
Split-core waveguide paper out in Journal of Computational Electronics.
Custom Raman scattering support merged into laserfun (open source).
Ph.D. completed. Open to postdoc & assistant professor roles.