2020
DOI: 10.1063/5.0005870
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On-chip terahertz modulation and emission with integrated graphene junctions

Abstract: The efficient modulation and control of ultrafast signals on-chip is of central importance in terahertz (THz) communications and a promising route toward sub-diffraction limit THz spectroscopy. Two-dimensional (2D) materials may provide a platform for these endeavors. We explore this potential, integrating high-quality graphene p-n junctions within two types of planar transmission line circuits to modulate and emit picosecond pulses. In a coplanar stripline geometry, we demonstrate electrical modulation of THz… Show more

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Cited by 14 publications
(7 citation statements)
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“…The flexible PET/STE can therefore be used as the building blocks for enhancing and manipulating THz radiation, and can be assembled to the ready-to-use device for compact THz spectroscopic application. [66][67][68]…”
Section: Discussionmentioning
confidence: 99%
“…The flexible PET/STE can therefore be used as the building blocks for enhancing and manipulating THz radiation, and can be assembled to the ready-to-use device for compact THz spectroscopic application. [66][67][68]…”
Section: Discussionmentioning
confidence: 99%
“…9,10 Due to the increased degree of integration of the THz applications, miniaturizing the complex THz system into a compact unit is highly desirable. 11,12 Currently, more and more theoretical and experimental studies show that ultrafast spintronics is closely associated with THz photonics. 13 On one hand, THz pulses provide powerful tools for studying ultrafast spintronics, enabling THz-driven spin waves, probing spin transport, and ultrafast magnetometry.…”
Section: Introductionmentioning
confidence: 99%
“…They have good temporal and spatial coherence, low photon energy, high transmission capacity, and strong penetration, making them important in various fields such as THz imaging, nondestructive inspection, and high-speed THz communication . For a typical THz application system, quite complex THz optoelectronic devices are required, which includes the effective THz emitters and/or sources, , THz modulators, , and THz detectors. , Due to the increased degree of integration of the THz applications, miniaturizing the complex THz system into a compact unit is highly desirable. , …”
Section: Introductionmentioning
confidence: 99%
“…Early on-chip THz experiments incorporated photoconductive (PC) switches into transmission line circuits to emit and detect THz radiation. Recent on-chip THz efforts have explored new geometries, leading to increases in the THz amplitude and spectral bandwidth. On-chip THz TDS has been recently used to study electronic phases at cryogenic temperatures in carbon nanotubes, topological insulators, and two-dimensional electronic systems such as GaAs and graphene. Most of the existing designs for on-chip THz spectroscopy require monolithic fabrication of the THz emitter/receiver and the vdW device. The combined complexity of fabricating both the THz spectrometer and a vdW device to perform a single experiment, however, reduces measurement throughput.…”
mentioning
confidence: 99%