An infrared detector based on SWNT film suspended on double cantilever

Author(s):  
Seong Ho Han ◽  
Dong Geon Jung ◽  
Seong Ho Kong
Keyword(s):  
Author(s):  
M. E. Twigg ◽  
B. R. Bennett ◽  
J. R. Waterman ◽  
J. L. Davis ◽  
B. V. Shanabrook ◽  
...  

Recently, the GaSb/InAs superlattice system has received renewed attention. The interest stems from a model demonstrating that short period Ga1-xInxSb/InAs superlattices will have both a band gap less than 100 meV and high optical absorption coefficients, principal requirements for infrared detector applications. Because this superlattice system contains two species of cations and anions, it is possible to prepare either InSb-like or GaAs-like interfaces. As such, the system presents a unique opportunity to examine interfacial properties.We used molecular beam epitaxy (MBE) to prepare an extensive set of GaSb/InAs superlattices grown on an GaSb buffer, which, in turn had been grown on a (100) GaAs substrate. Through appropriate shutter sequences, the interfaces were directed to assume either an InSb-like or GaAs-like character. These superlattices were then studied with a variety of ex-situ probes such as x-ray diffraction and Raman spectroscopy. These probes confirmed that, indeed, predominantly InSb-like and GaAs-like interfaces had been achieved.


2021 ◽  
Vol 14 (1) ◽  
pp. 1-13
Author(s):  
ZHANG Jin-yue ◽  
◽  
LU Jun-peng ◽  
NI Zhen-hua

2012 ◽  
Vol 31 (2) ◽  
pp. 118-121
Author(s):  
Peng ZHOU ◽  
Hong-Qiang WEI ◽  
Qing-Qing SUN ◽  
Li YE ◽  
Lin CHEN ◽  
...  
Keyword(s):  

2021 ◽  
pp. 004051752110199
Author(s):  
Ling Liu ◽  
Li Wei ◽  
Fengxin Sun

Tactile sensations of fabrics are the primary property determining the wearing comfort of clothing; however, comprehensive evaluation of the fabric tactile property by considering the flexural buckling of fabrics under high curvature, hysteresis performance and thermal property has not been fully studied, leading to a clear gap between the existing measurement methods and application requirements. Herein, a simultaneous-integrated testing method, namely the Touch Sensation Tester for Fabrics (TST-F) was introduced to evaluate the mechanical–thermal sensory properties of woven fabrics. The introduced instrument used one device with a single mechanical sensor to test various mechanical properties by constructing different deformations of fabrics, and the thermal property was simultaneously measured using an infrared detector array, achieving an efficient characterization of the mechanical–thermal sensation properties of textiles. The measurement capacity and repeatability of the TST-F were statistically analyzed; the measurement indices and their relation with fabric mechanical–thermal sensation properties were also exhibited. Results showed that the TST-F was promising to characterize fabric touch sensations in terms of bending stiffness, compression softness with wrinkling, stretching tightness and thermal comfort by considering the infrared transmission and heat conductivity of textiles.


2021 ◽  
Vol 53 (7) ◽  
Author(s):  
Junbin Li ◽  
Xuchang Zhou ◽  
Dongsheng Li ◽  
Yingchun Mu ◽  
Haipeng Wang ◽  
...  

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