Uncooled terahertz photodetectors (PDs) showing fast (ps) response and high sensitivity (noise equivalent power (NEP) < nW/Hz1/2) over a broad (0.5-10 THz) frequency range are needed for applications in high-resolution spectroscopy (relative accuracy ~10-11), metrology, quantum information, security, imaging, optical communications. However, present terahertz receivers cannot provide the required balance between sensitivity, speed, operation temperature, and frequency range. Here, we demonstrate uncooled terahertz PDs combining the low (~2000 kB ?m-2) electronic specific heat of high mobility (>50 000 cm2 V-1 s-1) hexagonal boron nitride-encapsulated graphene, with asymmetric field enhancement produced by a bow-tie antenna, resonating at 3 THz. This produces a strong photo-thermoelectric conversion, which simultaneously leads to a combination of high sensitivity (NEP <= 160 pW Hz-1/2), fast response time (<=3.3 ns), and a 4 orders of magnitude dynamic range, making our devices the fastest, broad-band, low-noise, room-temperature terahertz PD, to date.

HBN-Encapsulated, Graphene-based, Room-temperature Terahertz Receivers, with High Speed and Low Noise

Viti L
;
Vitiello MS
2020

Abstract

Uncooled terahertz photodetectors (PDs) showing fast (ps) response and high sensitivity (noise equivalent power (NEP) < nW/Hz1/2) over a broad (0.5-10 THz) frequency range are needed for applications in high-resolution spectroscopy (relative accuracy ~10-11), metrology, quantum information, security, imaging, optical communications. However, present terahertz receivers cannot provide the required balance between sensitivity, speed, operation temperature, and frequency range. Here, we demonstrate uncooled terahertz PDs combining the low (~2000 kB ?m-2) electronic specific heat of high mobility (>50 000 cm2 V-1 s-1) hexagonal boron nitride-encapsulated graphene, with asymmetric field enhancement produced by a bow-tie antenna, resonating at 3 THz. This produces a strong photo-thermoelectric conversion, which simultaneously leads to a combination of high sensitivity (NEP <= 160 pW Hz-1/2), fast response time (<=3.3 ns), and a 4 orders of magnitude dynamic range, making our devices the fastest, broad-band, low-noise, room-temperature terahertz PD, to date.
2020
Istituto Nanoscienze - NANO
Inglese
20
5
3169
3177
9
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Sì, ma tipo non specificato
terahertz photodetector graphene thermoelectric effect
Internazionale
5
info:eu-repo/semantics/article
262
Viti, L; Purdie, Dg; Lombardo, A; Ferrari, Ac; Vitiello, Ms
01 Contributo su Rivista::01.01 Articolo in rivista
partially_open
   Ultra-Short Pulse laser Resonators IN the Terahertz
   SPRINT
   European Commission
   Horizon 2020 Framework Programme
   681379

   Graphene Flagship Core Project 2
   GrapheneCore2
   European Commission
   Horizon 2020 Framework Programme
   785219

   BalzanPrize 2016
   Balzan
   BalzanPrize 2016
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/383831
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