A nanophotonic-enhanced SHG platform with a new overlap-integral formalism enables quantitative probing of light-driven interfacial dynamics, showing electrolyte-dependent spectral shifts and intensity-dependent susceptibility changes at silicon-oxide-electrolyte interfaces.
Title resolution pending
2 Pith papers cite this work, alongside 889 external citations. Polarity classification is still indexing.
representative citing papers
Salt stabilises a 5 nm Newton black film in vertical soap films, extending their lifetime at all humidities, while drainage and evaporation dynamics remain unchanged down to 100 nm.
citing papers explorer
-
Revealing Light-Driven Dynamics at Nanostructured Solid-Liquid Interfaces with In-Situ SHG
A nanophotonic-enhanced SHG platform with a new overlap-integral formalism enables quantitative probing of light-driven interfacial dynamics, showing electrolyte-dependent spectral shifts and intensity-dependent susceptibility changes at silicon-oxide-electrolyte interfaces.
-
Stabilising Evaporating Soap Films with Salt
Salt stabilises a 5 nm Newton black film in vertical soap films, extending their lifetime at all humidities, while drainage and evaporation dynamics remain unchanged down to 100 nm.