Broadband ultrafast self-heterodyned chiro-optical spectroscopy
Francesco Gucci{\dag}, Andrea Iudica{\dag}, Andres Valladares Y Tacchi{\dag}, Andrea Schirato, Giulia Crotti, Ryeong Myeong Kim, Soo Min Lee, Jeong Hyun Han, Andrea Villa, Dawar Ali, Aurora Rizzo, Margherita Maiuri, Ki Tae Nam, Giuseppe Della Valle, Giulio Cerullo

TL;DR
This paper introduces a highly sensitive broadband ultrafast chiro-optical spectroscopy method combining interferometry and polarization detection, enabling detailed study of transient chiro-optical phenomena in nanostructures and materials.
Contribution
The work presents a novel phase-sensitive self-heterodyned detection technique for broadband ultrafast chiro-optical spectroscopy with enhanced sensitivity and applicability.
Findings
Demonstrated on gold nano-helicoids showing transient chiro-optical responses.
Applied to lead halide perovskites for broadband time-resolved Faraday rotation.
Achieved sensitivity close to shot-noise limit (<50 μdeg).
Abstract
Ultrafast chiro-optical spectroscopy provides unique access to the structural dynamics of molecules, spin-valley relaxation in semiconductors, and the non-equilibrium optical response of chiral nanophotonic systems. Yet, because chiral signals are intrinsically weak and time-resolved spectroscopy probes small photoinduced changes, transient chiro-optical responses are often difficult to isolate from parasitic achiral contributions. Here, we introduce a broadband ultrafast chiro-optical spectroscopy technique that integrates a birefringent common-path interferometer with an optical polarization bridge to sensitively detect photoinduced changes in the polarization state of light. Phase-sensitive self-heterodyned detection enables simultaneous measurement of transient circular dichroism and optical rotatory dispersion across a broad spectral range with ultrafast temporal resolution.…
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Taxonomy
TopicsSpectroscopy and Quantum Chemical Studies · Quantum optics and atomic interactions · Metamaterials and Metasurfaces Applications
