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20182026
most citedMolecular monolayer strong coupling in dielectric soft microcavities

28 citations · 35 across the 9 of their papers we have counts for

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physics.optics2026

Effusivity-Controlled Interfacial Thermal Transport Revealed by Nanoscale Optical Thermometry

Adarsh B Vasista, Anita Kumari, Yash P. Mhaske

Quantitative imaging of heat transport with high spatial and temporal resolution is essential for understanding thermal processes in heterogeneous systems, yet direct measurements…

physics.optics2026

Tailoring soft cavities for robust molecular strong coupling

Siddharaj M. Gadge, Adarsh B. Vasista

How should one design efficient chemically open optical cavities for molecular strong coupling? Addressing this question is important for the development of soft-cavity platforms f…

physics.optics2023

Non steady-state thermometry with optical diffraction tomography

Adarsh B Vasista, Bernard Ciraulo, Jaime Ortega Arroyo +1

Measurement of local temperature using label-free optical methods has gained importance as a pivotal tool in both fundamental and applied research. Yet, most of these approaches ar…

physics.optics2021

Beaming Elastic and SERS Emission from Bent-Plasmonic Nanowire on a Mirror Cavity

Sunny Tiwari, Adarsh B. Vasista, Diptabrata Paul +2

We report on the experimental observation of beaming elastic and surface enhanced Raman scattering (SERS) emission from a bent-nanowire on a mirror (B-NWoM) cavity. The system was…

physics.optics2021

Effect of molecular absorption and vibrational modes in polariton assisted photoemission from a layered molecular material

Adarsh B Vasista, Kishan S Menghrajani, William L Barnes

The way molecules absorb, transfer, and emit light can be modified by coupling them to optical cavities. The extent of the modification is often defined by the cavity-molecule coup…

physics.optics2020

Differential molecule-cavity mode coupling in soft-cavities

Adarsh B Vasista, William L Barnes

The way molecules absorb, transfer, and emit light can be dramatically modified by coupling them to optical cavities. The extent of the modification is often defined by the cavity-…