Deterministic Terahertz wave control in scattering media
Vivek Kumar, Vittorio Cecconi, Luke Peters, Jacopo Bertolotti, Alessia, Pasquazi, Juan Sebastian Totero Gongora, Marco Peccianti

TL;DR
This paper presents a theoretical method for deterministic broadband terahertz wave control in scattering media, utilizing direct electric field measurements to achieve precise spatio-temporal waveform shaping and complex field reconstruction.
Contribution
It introduces a novel deterministic scheme that leverages Time-Domain Spectroscopy for direct field assessment, enabling advanced wave shaping and complex phase profile reconstruction in scattering media.
Findings
Achieves broadband, spatio-temporal waveform control of terahertz fields.
Enables reconstruction of complex phase profiles like optical vortices.
Utilizes minimal experimental effort for field and scattering matrix assessment.
Abstract
Scattering-assisted synthesis of broadband optical pulses is recognized to have a cross-disciplinary funda-mental and application importance. Achieving full-waveform synthesis generally requires means for assessing the instantaneous electric field, i.e. the absolute electromagnetic phase. These are generally not accessible to established methodologies for scattering-assisted pulse envelope and phase shaping. The lack of field sensitivity also results in complex indirect approaches to evaluate the scattering space-time properties. The terahertz frequency domain potentially offers some distinctive new possibilities thanks to the availability of methods to perform absolute measurements of the scattered electric field, as opposed to optical intensity-based diagnostics. An interesting conceptual question is whether this additional degree of freedom can lead to different types of…
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