Significant Radiation Enhancement in Photoconductive Terahertz Emitters by Incorporating Plasmonic Contact Electrodes
arXiv:1209.1680 · doi:10.1038/ncomms2638
Abstract
Even though the terahertz spectrum is well suited for chemical identification, material characterization, biological sensing and medical imaging, practical development of these applications has been hindered by the attributes of terahertz sources, namely low output power and poor efficiency. Here, we demonstrate that use of plasmonic contact electrodes can significantly enhance the optical-to-terahertz conversion efficiency in a photoconductive terahertz emitter. The use of plasmonic contact electrodes offers nanoscale carrier transport path lengths for the photocarriers, enabling efficient collection of the majority of carriers in a sub-picosecond time-scale. It also allows increasing photoconductor active area without a considerable increase in the capacitive loading to the antenna, boosting the maximum terahertz radiation power by preventing the carrier screening effect and thermal breakdown at high optical pump powers. We experimentally demonstrated 50 times higher terahertz radiation power from a plasmonic photoconductive emitter in comparison with a similar photoconductive emitter with non-plasmonic contact electrodes.
References in corpus (1)
Cited by in corpus (30)
- Efficient metallic spintronic emitters of ultrabroadband terahertz radiation
- Ultrabroadband single-cycle terahertz pulses with peak fields of 300 kV cm from a metallic spintronic emitter
- Enhancement of Terahertz Photoconductive Antennas and Photomixers Operation by Optical Nanoantennas
- Spintronic Sources of Ultrashort Terahertz Electromagnetic Pulses
- High Sensitivity Terahertz Detection through Large-Area Plasmonic Nano-Antenna Arrays
- Room temperature broadband coherent terahertz emission induced by dynamical photon drag in graphene
- Boosting the Terahertz Photoconductive Antenna Performance with Optimized Plasmonic Nanostructures
- Room Temperature Terahertz Spectrometer with Quantum-Level Sensitivity
- Highly-efficient spintronic terahertz emitter enabled by metal-dielectric photonic crystal
- Silicon-plasmonic integrated circuits for terahertz signal generation and coherent detection
- Plasmonic photoconductive terahertz focal-plane array with pixel super-resolution
- Highly Efficient and Electrically Robust Carbon Irradiated SI-GaAs Based Photoconductive THz Emitters
- High bandwidth waveguide-integrated plasmonic germanium photodetector
- Wavelength conversion through plasmon-coupled surface states
- Coherent terahertz radiation with 2.8-octave tunability through chip-scale photomixed microresonator optical parametric oscillation
- Coherently controlled generation of single-cycle terahertz pulses from thin layer of nonlinear medium with low-frequency resonances
- Efficient 3-dimensional photonic-plasmonic photo-conductive switches for picosecond THz pulses
- Microlensless Interdigitated Photoconductive Terahertz Emitters
- Terahertz response of patterned epitaxial graphene
- Broadband terahertz time-domain spectroscopy and fast FMCW imaging: principle and applications
- Plasmonic Heterodyne Spectrometry for Resolving the Spectral Signatures of Ammonia over a 1-5 THz Frequency Range
- Analysis of Screening Effects on Terahertz Photoconductive Devices using a Fully-Coupled Multiphysics Approach
- Efficient Discontinuous Galerkin Scheme for Analyzing Nanostructured Photoconductive Devices
- Use of THz Photoconductive Sources to Characterize Tunable Graphene RF Plasmonic Antennas
- Plasmonic instabilities and terahertz waves amplification in graphene metamaterials
- Design and performance of a terahertz photoconductive antenna with nano-crossfinger structure
- Enhanced terahertz radiation from an elliptical-beam-illuminated sawtooth photoconductive antenna: design and numerical analysis
- TeraFET terahertz detectors with spatially non-uniform gate capacitances
- Experimental study of a terahertz time-domain spectrometer based on photoconductive antenna
- Room Temperature, Quantum-Limited THz Heterodyne Detection? Not Yet