搜索结果: 1-15 共查到“物理学 devices”相关记录47条 . 查询时间(0.11 秒)
New quantum computing architecture could be used to connect large-scale devices(图)
量子计算架构 大型设备 定向光子发射 量子互连
2023/6/9
2018年SPIE生物和纳米混合光子和电子材料和器件会议(SPIE Bio and Nano Hybrid Photonic and Electronic Materials and Devices 2018)
2018年 SPIE 生物和纳米混合光子和电子材料和器件 会议
2017/11/27
This conference, Bio and Nano Hybrid Photonic and Electronic Materials and Devices, is sponsored by SPIE Optics + Photonics as part of the Nanoscience + Engineering track. It was first launched in 200...
Researchers develop flexible,stretchable photonic devices
Researchers flexible stretchable photonic devices
2017/11/23
Researchers at MIT and several other institutions have developed a method for making photonic devices — similar to electronic devices but based on light rather than electricity — that can bend and str...
2018年SPIE光电器件的物理仿真和光子工程会议(SPIE Physics,Simulation,and Photonic Engineering of Photovoltaic Devices VII)
2018年 SPIE 光电器件的物理仿真和光子工程 会议
2017/10/26
2018年SPIE光电器件的物理仿真和光子工程会议(SPIE Physics,Simulation,and Photonic Engineering of Photovoltaic Devices VII)。
2017年自旋电子和纳米磁性计算设备研讨会(2017 Spintronic and Nanomagnetic Computing Devices)
2017年 自旋电子和纳米磁性计算设备 研讨会
2017/7/17
The main purpose of this tutorial is to provide an overview about spintronic and nanomagnetic computing devices. The tutorial/workshop will explore various spin based and nanomagnetic computing paradi...
2017OSA量子光子器件专题会议(Quantum Photonic Devices)。
'Lossless' metamaterial could boost efficiency of lasers and other light-based devices
Lossless metamaterial lasers other light-based devices
2017/3/14
Engineers at the University of California San Diego have developed a material that could reduce signal losses in photonic devices. The advance has the potential to boost the efficiency of various ligh...
New ‘Bottlebrush’ Electroactive Polymers Make Dielectric Elastomers Increasingly Viable for Use in Devices
Bottlebrush Electroactive Polymers Dielectric Elastomers Use in Devices
2016/11/29
Dielectric elastomers (DEs) are the leading technology for artificial muscles due to a favorable combination of large stroke, fast response, and high energy density. However, at large actuations, DEs ...
A team of researchers, led by a group at the University of California, Riverside, have demonstrated for the first time the transmission of electrical signals through insulators in a sandwich-like stru...
Spintronics advance brings wafer-scale quantum devices closer to reality
Spintronics advance wafer-scale quantum devices
2015/7/13
An electronics technology that uses the “spin”—or magnetization—of atomic nuclei to store and process information promises huge gains in performance over today’s electron-based devices. But getting th...
Imagine a future in which our electrical gadgets are no longer limited by plugs and external power sources.This intriguing prospect is one of the reasons for the current interest in building the capac...
A team of researchers from the University of California, Riverside, Bourns College of Engineering and the Russian Academy of Science has demonstrated a new type of holographic memory device that could...
SPICE model of memristive devices with threshold
SPICE model memristive devices threshold Computational Physics
2012/4/24
Although memristive devices with threshold voltages are the norm rather than the exception in experimentally realizable systems, their SPICE programming has not yet been suggested. Here, we show how t...
Electroluminescence from chirality-sorted (9,7)-semiconducting carbon nanotube devices
Electroluminescence chirality-sorted semiconducting carbon nanotube devices
2011/8/18
Abstract: We have measured the electroluminescence and photoluminescence of (9,7) semiconducting carbon nanotube devices and demonstrate that the electroluminescence wavelength is determined by the na...
Manipulating optical signals at sub-wavelength scale by planar arrays of metallic nanospheres: Towards plasmonic interference devices
optical signals sub-wavelength scale metallic nanospheres plasmonic interference devices
2011/8/18
Abstract: We show that interference can be the principle of operation of an all-optical switch and other nanoscale plasmonic interference devices (PIDs). The optical response of two types of planar pl...