collaborators
Showing physics.opticsShow all

6 papers · 1 filter

physics.optics2026

From order to chaos in a chip-scale Kerr parametric oscillator

Luca O. Trinchão, Juan Diego Mazo-Vásquez, Miguel Nienstedt +13

Integrated photonics has enabled a wide class of chip-scale light sources and quantum technologies. Within this field, microresonator-based degenerate optical parametric oscillator…

physics.optics2026

Vectorial engineering of second-harmonic generation in silicon-based waveguides integrated with 2D materials

Mohd Rehan, Nathalia B. Tomazio, Alisson R. Cadore +4

Integrating 2D materials onto on-chip photonic devices holds significant potential for nonlinear frequency conversion across various applications. The lack of inversion symmetry in…

physics.optics2026

Hybridized-band parametric oscillations in coupled Kerr microresonators

Luca O. Trinchão, Luiz Peres, Eduardo S. Gonçalves +6

Coupled resonators form band-like optical states that support rich nonlinearities beyond what is possible in single resonators. In these systems, four-wave mixing mediates interban…

physics.optics2026

Color symmetry breaking in a nonlinear optical microcavity

Luca O. Trinchão, Alekhya Ghosh, Arghadeep Pal +8

Spontaneous symmetry breaking leads to diverse phenomena across the natural sciences, from the Higgs mechanism in particle physics to superconductors and collective animal behavior…

physics.optics2025

Mapping Nonlinear Mode Interactions in Coupled Kerr Resonators

Luca O. Trinchão, Luiz Peres, Eduardo S. Gonçalves +6

We present a method for resolving spatial mode overlaps in coupled microresonators based on Kerr and thermal cross-phase modulation. Through a pump-probe setup, we measure experime…

physics.optics2024

Tunable Degenerate Optical Parametric Oscillation with Coupled Microresonators

Nathalia B. Tomazio, Luca O. Trinchão, Eduardo S. Gonçalves +5

Microresonator-based degenerate optical parametric oscillation (DOPO) has recently been explored as a compelling platform for all-optical computing and quantum information applicat…