arXiv:2006.10837v2Generating and detecting radiation in the technologically relevant range of the so-called terahertz gap (0.1–10 THz) is challenging because of a lack of efficient sources and detectors. Quantum dots in carbon nanotubes have shown great potential to build sensitive terahertz detectors, usually based on photon-assisted tunneling. A recently reported mechanism combining resonant quantum dot transitions and tunneling barrier asymmetries results in a narrow linewidth photocurrent response with a large signal-to-noise ratio under weak THz radiation. That device was sensitive to one frequency, corresponding to transitions between equidistant quantized states. In this work we show, using numerical simulations together with scannin...
Abstract — We present new data extending our previous paper at the ISSTT2006 on microwave detection ...
We study interbanddipole transitions across curvature-induced narrow gaps in quasi-metallic single-w...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
Terahertz technology has recently emerged as a highly sought-after and versatile scientific tool in ...
We have investigated the electronic structures of metallic carbon nanotube quantum dots (CNT QDs) by...
Terahertz (THz) technologies are promising for diverse areas such as medicine, bioengineering, astro...
International audienceAbstract The control of light-matter interaction at the most elementary level ...
We propose and justify several proposals utilizing unique electronic properties of carbon nanotubes ...
Carbon nanotubes (CNTs) are promising nanomaterials for high frequency applications due to their uni...
We have investigated the extraordinary optical transmission of terahertz waves through an array of n...
This is the final version. Available from IOP Publishing via the DOI in this record. We show that th...
We formulate and justify several proposals utilizing unique electronic properties of carbon nanotube...
It is reported that terahertz radiation from 0.69 to 2.54 THz has been sensitively detected in a dev...
The THz field quantum dot sensors (T-sensors) made of graphene and carbon nanotubes have a very low ...
In the last ten years, research has been devoted to the development of hybrid architecture mesoscopi...
Abstract — We present new data extending our previous paper at the ISSTT2006 on microwave detection ...
We study interbanddipole transitions across curvature-induced narrow gaps in quasi-metallic single-w...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
Terahertz technology has recently emerged as a highly sought-after and versatile scientific tool in ...
We have investigated the electronic structures of metallic carbon nanotube quantum dots (CNT QDs) by...
Terahertz (THz) technologies are promising for diverse areas such as medicine, bioengineering, astro...
International audienceAbstract The control of light-matter interaction at the most elementary level ...
We propose and justify several proposals utilizing unique electronic properties of carbon nanotubes ...
Carbon nanotubes (CNTs) are promising nanomaterials for high frequency applications due to their uni...
We have investigated the extraordinary optical transmission of terahertz waves through an array of n...
This is the final version. Available from IOP Publishing via the DOI in this record. We show that th...
We formulate and justify several proposals utilizing unique electronic properties of carbon nanotube...
It is reported that terahertz radiation from 0.69 to 2.54 THz has been sensitively detected in a dev...
The THz field quantum dot sensors (T-sensors) made of graphene and carbon nanotubes have a very low ...
In the last ten years, research has been devoted to the development of hybrid architecture mesoscopi...
Abstract — We present new data extending our previous paper at the ISSTT2006 on microwave detection ...
We study interbanddipole transitions across curvature-induced narrow gaps in quasi-metallic single-w...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...