Terahertz microscopy through complex media

V Vivek Kumar V Vittorio Cecconi A Antonio Cutrona L Luke Peters L Luana Olivieri J Juan S. Totero Gongora A Alessia Pasquazi M Marco Peccianti

Abstract

Abstract Manipulating broadband fields in scattering media is a modern challenge across photonics and other wave domains. Recent studies have shown that complex propagation in scattering media can be harnessed to manipulate broadband light wave packets in space-time for focusing, imaging, and computing applications. Interestingly, while many proposed methodologies operate on intensity-based assessment of scattered fields, often in the spectral domain, from a pure transmission-function perspective, scattering operates as a linear field-level combinatory process, i.e., the superposition of transformation of unit excitations. As a result, we recently demonstrated that gaining experimental access to instantaneous scattered fields, as available through time-domain spectroscopy in the terahertz (THz) spectral range, in conjunction with sparse light excitation typical of ghost imaging, provides a key advantage in enabling the functionalisation of scattering, exposing a novel modelling paradigm. In this paper, we provide experimental proof of reconstructing 1-dimensional object features through a scattering medium using a fully broadband THz time-domain approach.

Article Details

Volume / Issue Vol. 15, Issue 1
Published April 05, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (8)

V

Vivek Kumar

V

Vittorio Cecconi

A

Antonio Cutrona

L

Luke Peters

L

Luana Olivieri

J

Juan S. Totero Gongora

A

Alessia Pasquazi

M

Marco Peccianti