collaborators

7 papers

physics.optics2026

Controlled non-volatile modulation of optical dispersion in monolayer tungsten disulfide via ferroelectric polarization patterning

Yuhong Cao, Zekun Hu, Jason Lynch +7

The manipulation of optical properties, including reflection, refraction, polarization, phase, and frequency, has long been central to advancing photonic and optoelectronic technol…

physics.optics2026

Understanding Optical Anisotropy in Multilayer γ-InSe and ε-GaSe

Jason Lynch, Zexuan Liu, Sergiy Krylyuk +3

Low-dimensional media have exhibited optical anisotropy that is unachievable in traditional 3D media due to the asymmetry of their strong, in-plane covalent bonds and weak out-of-p…

physics.optics2025

Electrically Tunable Excitonic-Hyperbolicity in Chirality-Pure Carbon Nanotubes

Jason Lynch, Pavel Shapturenka, Mohammad Mojtaba Sadafi +8

Metamaterials exhibiting hyperbolic dispersion enable unprecedented control over light-matter interactions, from sub-diffraction imaging to enhanced spontaneous emission. However,…

physics.optics2025

Reconfigurable, non-volatile control of optical anisotropy in ReS2 via ferroelectric gating

Mahfujur Rahaman, Seunguk Song, Aaliyah C. Khan +8

Electrically tunable linear dichroism (LD) with non-volatile properties represents a critical yet elusive feature for next-generation integrated photonic elements in practical devi…

physics.optics2025

Experimental demonstration of corrugated nanolaminate films as reflective light sails

Matthew F. Campbell, Pawan Kumar, Jason Lynch +11

Achieving laser-driven, reflective, relativistic light sails would represent a tremendous breakthrough for humankind, allowing us to advance our understanding of the solar system a…

physics.optics2025

Natural Hyperbolicity of Hexagonal Boron Nitride in the Deep Ultraviolet

Bongjun Choi, Jason Lynch, Wangleong Chen +6

Hyperbolic media enable unique optical phenomena including hyperlensing, negative refraction, enhanced photonic density of states (PDOS), and highly confined polaritons. While most…