In this work, a method to simultaneously measure the temperature and emissivity of any specimen, including metals and semiconductor materials, was developed using a concave mirror and a polarized radiometer. The ratio of the enhanced radiance after reflection off the mirror to the original radiance of a specimen allowed for emissivity determination in the range 0.1-0.9, with a variation of 8%. The combined standard uncertainty, u, of the temperature measurement by the current method is estimated to be 6.0 K at a temperature of 800 K. This was realized via classification of the parameter α into only three categories that were closely related to the surface roughness. Furthermore, it should be emphasized that the polarized spectral radiance measurements were carried out at a zenith angle of 75°, which contributed significantly to the success of this method.
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http://dx.doi.org/10.1063/5.0049666 | DOI Listing |
Microsyst Nanoeng
November 2024
PGMF and School of Physics, Huazhong University of Science and Technology, Wuhan, 430074, China.
High-precision geophones play crucial roles in terrestrial applications such as oil and gas exploration as well as seismic monitoring. The development of optomechanical precision measurements provides a new design method for geophones, offering higher sensitivity and smaller dimensions compared to traditional geophones. In this work, we introduce an optomechanical microelectromechanical system (MEMS) geophone based on a plano-concave Fabry‒Perot (F-P) microcavity, which has a high sensitivity of 146 V/g.
View Article and Find Full Text PDFSensors (Basel)
October 2024
Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China.
The unique diffractive properties of gratings have made them essential in a wide range of applications, including spectral analysis, precision measurement, optical data storage, laser technology, and biomedical imaging. With advancements in micro- and nanotechnologies, the demand for more precise and efficient grating fabrication has increased. This review discusses the latest advancements in grating manufacturing techniques, particularly highlighting laser interference lithography, which excels in sub-beam generation through wavefront and amplitude division.
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August 2024
Medical Devices R&D Center, Gachon University Gil Medical Center, Incheon 21565, Republic of Korea.
The primary goal during cancer removal surgery is to completely excise the malignant tumor. Because the color of the tumor and surrounding tissues is very similar, it is difficult to observe with the naked eye, posing a risk of damaging surrounding blood vessels during the tumor removal process. Therefore, fluorescence emission is induced using a fluorescent contrast agent, and color classification is monitored through camera imaging.
View Article and Find Full Text PDFTiny InGaN micro-LEDs (-LEDs) play a pivotal role in emerging display technologies, particularly augmented reality (AR) applications. Achieving both high internal quantum efficiency (IQE) and efficient light extraction efficiency (LEE) is essential. While wet chemical etching can recover the IQE after dry etching, it alters the pixel shape, impacting optical properties and reducing the LEE.
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