Molecular dynamics simulation on crossroad-type graphene-resonator accelerometer

被引:0
|
作者
Kang, Jeong Won [1 ,2 ]
Park, Joon Hoon [3 ]
Lee, Gyoo-Yeong [4 ]
Kim, Ki-Sub [5 ]
机构
[1] Graduate School of Transportation, Korea National University of Transportation, Uiwang-si,437-763, Korea, Republic of
[2] Department of IT Convergence, Korea National University of Transportation, Chungju,380-702, Korea, Republic of
[3] Department of Control and Instrumentation Engineering, Korea National University of Transportation, Chungju,380-702, Korea, Republic of
[4] School of Electronic, Information and Communication Engineering, Kangwon National University, Samcheok-si,245-711, Korea, Republic of
[5] Department of Chemical and Biological Engineering, Korea National University of Transportation, Chungju,380-702, Korea, Republic of
关键词
Quantum computers - Graphene - Natural frequencies - Molecular dynamics - Resonators;
D O I
10.1166/jctn.2015.4336
中图分类号
学科分类号
摘要
Highly sensitive accelerometers have multiple applications in industry and science, and can be used as sensors in a wide variety of devices. Here, we investigate the application of crossroadtype graphene resonators as ultrahigh sensitivity accelerometers by performing classical molecular dynamics simulations. The relationships between the resonance frequencies and acceleration could be divided by two regions. The simulation data showed that when the accelerations were higher than 0.1 nm/ps2, the resonance frequency increased with increase of the acceleration. In particular, acceleration, as a function of frequency, was regressed by a power function and shown to have a linear relationship on a log-log scale. Crossroad-type graphene resonators have multiple applications to nanoscale sensors, filters, switching devices, and quantum computing, as well as ultra-fast response resonators. © 2015 American Scientific Publishers.
引用
收藏
页码:4186 / 4190
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