Terahertz-driven phase transition applied as a room-temperature terahertz detector
Christopher G. Wade, Matteo Marcuzzi, Emanuele Levi, Jorge M. Kondo,, Igor Lesanovsky, Charles S. Adams, Kevin J. Weatherill

TL;DR
This paper demonstrates a novel room-temperature terahertz detector utilizing a phase transition driven by weak terahertz electric fields in caesium vapour, enabling low-power, high-sensitivity detection.
Contribution
It introduces a new phase transition driven by low-intensity terahertz fields in caesium vapour and develops two protocols for terahertz detection at room temperature.
Findings
Fast nonlinear response with 20 μs timescale
Detection sensitivity with NEP ≤ 1 pWHz$^{-1/2}$
Operates at room temperature with low field strength
Abstract
There are few demonstrated examples of phase transitions that may be driven directly by terahertz-frequency electric fields, and those that are known require field strengths exceeding 1 MVcm. Here we report a room-temperature phase transition driven by a weak ( Vcm), continuous-wave terahertz electric field. The system consists of caesium vapour under continuous optical excitation to a high-lying Rydberg state, which is resonantly coupled to a nearby level by the terahertz electric field. We use a simple model to understand the underlying physical behaviour, and we demonstrate two protocols to exploit the phase transition as a narrowband terahertz detector: the first with a fast (20 s) nonlinear response to nano-Watts of incident radiation, and the second with a linearised response and effective noise equivalent power (NEP) pWHz. The work…
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Taxonomy
TopicsTerahertz technology and applications · Spectroscopy and Quantum Chemical Studies · Mechanical and Optical Resonators
