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Ultrafast & Terahertz Photonics Group

Research areas

Nanomaterials

We use pump/probe spectroscopy to study how light and matter interact on femtosecond to nanosecond timescales. Using visible probes we can track electronic processes, while infrared radiation lets us study vibrational states of molecules and atomic-scale defects in semiconductors.

CNT

Recent papers:

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Terahertz medical imaging

Performing in vivo studies of the THz properties of skin is a major initiative in the group, supported by the EPSRC Terabotics Programme GrantLink opens in a new window. We develop robust measurement protocols and test them on a statistically significant number of patients, cross-checking with other methods.

Medical

Recent papers:

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Semiconductors and Energy materials

A major strand of our research is to improve our knowledge of the fundamental science underpinning new semiconductor materials, such as metal-halide perovskites, which are often attractive for photovoltaic applications.

Electronically-delayed optical pump/THz probe spectroscopy on a variety of semiconductors

Recent papers:

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Terahertz components, methods and techniques

We develop new THz devices and integrate them into novel systems designs that can perform THz imaging and THz spectroscopy faster, and with increased capabilities (e.g. polarisation control; robot-controlled probes).

Single-pixel

Recent papers:

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Recent publication highlights [filter by topic: view all | highlights | THz | perovskites | nano | biomedical]

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Simultaneous measurement of orthogonal terahertz fields via an emission multiplexing scheme

Diagram

Huiliang Ou, Rayko Ivanov Stantchev, Xuequan Chen, Thierry Blu, Mykhaylo Semtsiv, William Ted Masselink, A. Hernandez Serrano, G. Costa, J. Young, N. Chopra, J. Lloyd-Hughes, and E. Pickwell-MacPherson
Optics Express 32, 5567 (Feb 2024)

Fri 02 Feb 2024, 16:17 | Tags: THz spectroscopy, THz components, MacPherson, 2024, Lloyd-Hughes

Optimum Optical Designs for Diffraction-Limited Terahertz Spectroscopy and Imaging Systems Using Off-Axis Parabolic Mirrors

Shaping

N. Chopra and J. Lloyd-Hughes
J Infrared Milli Terahz Waves 44, 981 (Nov 2023)


The 2023 terahertz science and technology roadmap

Diagram

A. Leitenstorfer, ..., E. Pickwell-MacPherson, ... and J. Cunningham
J. Phys. D: Appl. Phys. 56, 223001 (April 2023)


Tunable THz flat zone plate based on stretchable single-walled carbon nanotube thin film

CNT THz Fresnel lenses

G.M. Katyba, N.I. Raginov, E.M. Khabushev, V.A. Zhelnov, A. Gorodetsky, D.A. Ghazaryan, M.S. Mironov, D.V. Krasnikov, Y.G. Gladush, J. Lloyd-Hughes, A.G. Nasibulin, A.V. Arsenin, V.S. Volkov, K.I. Zaytsev, and M.G. Burdanova
Optica 10, 53 (Jan 2023)

Fri 06 Jan 2023, 22:48 | Tags: THz components, Lloyd-Hughes, 2023

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