By means of transmissive and scanning electron microscopy (investigation of ultra-replicas) three-dimensional organization of the interstitial (interfibrillar) space of the articular cartilage has been demonstrated; it repeats, to some extent, construction of the fibrous base. By means of mercury porometry quantitative characteristics of various parameters of the interfibrillar space are obtained. Their specific volume is 0.96 cm3/g of the dehydrated cartilage, space with equivalent diameters from 300 up to 5 nm makes 94%. By means of the gas adsorption method it has been stated that the specific internal surface is 23.8 m2 per 1 g of the dehydrated articular cartilage. Transmissive and scanning electron histochemistry has revealed several various forms of structured proteoglycans, demonstrated their spatial organization and interconnection with collagenous fibrils. The methodical complex applied can be used for investigating the connective tissue interstitial spaces in other parts of the human locomotor apparatus.
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Light Sci Appl
January 2025
Zhangjiang Laboratory, Shanghai, 201204, China.
Boasting superior flexibility in beam manipulation and a simpler framework than traditional phased arrays, terahertz metasurface-based phased arrays show great promise for 5G-A/6G communication networks. Compared with the reflective reconfigurable intelligent surface (reflective RIS), the transmissive RIS (TRIS) offers more feasibility for transceiver multiplexing systems to meet the growing demand for high-performance beam tracking in terahertz communication and radar systems. However, the terahertz TRIS encounters greater challenges in phase shift, beam efficiency, and complex circuitry.
View Article and Find Full Text PDFNat Commun
November 2024
School of Emerging Technology and Department of Physics, University of Science and Technology of China, Hefei, 230026, China.
The hybrid ferromagnet-superconductor heterostructures have attracted extensive attention as they potentially host topological superconductivity. Relevant experimental signatures have recently been reported in CrBr/NbSe ferromagnet-superconductor heterostructure, but controversies remain. Here, we reinvestigate CrBr/NbSe by an ultralow temperature scanning tunneling microscope with higher spatial and energy resolutions.
View Article and Find Full Text PDFMicrosyst Nanoeng
March 2024
Intelligent Semiconductor Engineering, Chung-Ang University, Heukseok-Dong, Dongjak-Gu, Seoul, 06974 Republic of Korea.
Polarization conversion and beam scanning metasurfaces are commonly used to reduce polarization mismatch and direct electromagnetic waves in a specific direction to improve the strength of a wireless signal. However, identifying suitable active and mechanically reconfigurable metasurfaces for polarization conversion and beam scanning is a considerable challenge, and the reported metasurfaces have narrow scanning ranges, are expensive, and cannot be independently controlled. In this paper, we propose a reconfigurable transmissive metasurface combined with a scissor and rotation actuator for independently controlling beam scanning and polarization conversion functions.
View Article and Find Full Text PDFA compact forward-directed transmissive beam scanner operating at a wavelength of 1550 nm was constructed and characterized. The scanner consists of two wire-grid polarizers (WGPs) surrounding a 45° Faraday rotator, causing incident light to reflect once from each WGP before transmitting through the second polarizer. Scanning is achieved by tilting one of the WGPs.
View Article and Find Full Text PDFACS Photonics
November 2023
nanotech@surfaces Laboratory, Empa, Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600 Dübendorf, Switzerland.
The fundamental understanding of quantum dynamics in advanced materials requires precise characterization at the limit of spatiotemporal resolution. Ultrafast scanning tunneling microscopy is a powerful tool combining the benefits of picosecond time resolution provided by single-cycle terahertz (THz) pulses and atomic spatial resolution of a scanning tunneling microscope (STM). For the selective excitation of localized electronic states, the transient field profile must be tailored to the energetic structure of the system.
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