This chapter introduces an infrared (IR) imaging system using a carbon nanotubes (CNT)-based single-pixel IR camera. IR detection is very popular in community and homeland security. The traditional IR detector has drawbacks such as the need for a cooling system or low resolution. CNT is a natural 1D material for serving as the sensing cell of IR detectors. With the help of this special type of CNT-based photodetector, a single-pixel IR imaging system has been developed. In this system, the data sampling process is quite different from that for traditional detectors or cameras. Compressive sensing is used for compressed data sampling and reconstruction of images. It has realized the dream of a camera with only one photodetector. Theoretical ...
Carbon nanotubes (CNTs) have a potential to be efficient infrared (IR) detection materials due to th...
Carbon nanotubes (CNTs) have a potential to be efficient infrared (IR) detection materials due to th...
This paper presents the development of non-cryogenic-cooling spectrum infrared (IR) focal plane arra...
Infrared (IR) cameras have versatile applications, but their applications were limited by the perfor...
In this work, high performance Carbon Nanotube (CNT) based Infrared (IR) photodetector was used in s...
Infrared (IR) cameras have versatile applications; however, the low performance and high cost of con...
Nanocarbon materials, such as carbon nanotubes and graphene, can potentially overcome the short come...
Infrared (IR) cameras have wide range of applications, but high cost and low performance of its core...
Using carbon nanotubes (CNT), high performance infrared detectors have been developed. Since the CNT...
The conventional photographs only record the sum total of light rays of each point on image plane so...
High performance infrared (IR) imaging systems usually require expensive cooling systems, which are ...
We present the development of a single carbon nanotube (CNT) based optical detector in the infrared ...
Carbon nanotubes (CNT) have a potential to be efficient infrared (IR) detection materials due to the...
Carbon nanotube (CNT), a one dimensional (1D) hollow cylinder, possesses exceptional optoelectronic ...
The emergence of carbon nanotube (CNT) based infrared (IR) detectors has welcomed new opportunities ...
Carbon nanotubes (CNTs) have a potential to be efficient infrared (IR) detection materials due to th...
Carbon nanotubes (CNTs) have a potential to be efficient infrared (IR) detection materials due to th...
This paper presents the development of non-cryogenic-cooling spectrum infrared (IR) focal plane arra...
Infrared (IR) cameras have versatile applications, but their applications were limited by the perfor...
In this work, high performance Carbon Nanotube (CNT) based Infrared (IR) photodetector was used in s...
Infrared (IR) cameras have versatile applications; however, the low performance and high cost of con...
Nanocarbon materials, such as carbon nanotubes and graphene, can potentially overcome the short come...
Infrared (IR) cameras have wide range of applications, but high cost and low performance of its core...
Using carbon nanotubes (CNT), high performance infrared detectors have been developed. Since the CNT...
The conventional photographs only record the sum total of light rays of each point on image plane so...
High performance infrared (IR) imaging systems usually require expensive cooling systems, which are ...
We present the development of a single carbon nanotube (CNT) based optical detector in the infrared ...
Carbon nanotubes (CNT) have a potential to be efficient infrared (IR) detection materials due to the...
Carbon nanotube (CNT), a one dimensional (1D) hollow cylinder, possesses exceptional optoelectronic ...
The emergence of carbon nanotube (CNT) based infrared (IR) detectors has welcomed new opportunities ...
Carbon nanotubes (CNTs) have a potential to be efficient infrared (IR) detection materials due to th...
Carbon nanotubes (CNTs) have a potential to be efficient infrared (IR) detection materials due to th...
This paper presents the development of non-cryogenic-cooling spectrum infrared (IR) focal plane arra...