All-fiber single-mode high modulation rate pseudorandom-coded laser

2013 ◽  
Vol 52 (12) ◽  
pp. 126108
Author(s):  
Xin Zhang ◽  
Fang Yang ◽  
Yuan Liu ◽  
Yan He ◽  
Xia Hou ◽  
...  
1988 ◽  
Author(s):  
D W. Anthon ◽  
G J. Dixon ◽  
M G. Ressl ◽  
T J. Pier

2013 ◽  
Vol 455 ◽  
pp. 167-172 ◽  
Author(s):  
Li Shuang Feng ◽  
Bo Hao Yin ◽  
Zhen Zhou ◽  
Jia Wei Sui ◽  
Chen Long Li

The design and simulation of a polarization-independent active metamaterial terahertz modulator is presented in this work. The device incorporates an array of gold triple SRRs on an n-doped gallium arsenide layer to create an active metamaterial terahertz modulator with a high modulation depth, a high modulation speed and an especial polarization-independent performance for use in terahertz communication, imaging and sense.We established the theoretical model and simulatedthe key performances of the device with Ansoft HFSS.The results showed that the device exhibits a polarization-insensitivebehavior with a maximum amplitude modulation depth of 71% and a modulation rate of3.2Mbps at the resonance frequency of0.86 THz.


2006 ◽  
Vol 45 (9A) ◽  
pp. 6911-6913 ◽  
Author(s):  
Li-Zen Hsieh ◽  
Der-Hwa Yeh ◽  
Liann-Be Chang ◽  
Ta-Wei Soong ◽  
Ping-Yu Kuei

2017 ◽  
Vol 2017 ◽  
pp. 1-7 ◽  
Author(s):  
Yi Huang ◽  
Tingyun Wang ◽  
Chuanlu Deng ◽  
Xiaobei Zhang ◽  
Fufei Pang ◽  
...  

Fiber-optic magnetic field sensing is an important method of magnetic field monitoring, which is essential for the safety of civil infrastructures, especially for power plant. We theoretically and experimentally demonstrated an optical fiber magnetic field sensor based on a single-mode-multimode-single-mode (SMS) structure immersed into the magnetic fluid (MF). The length of multimode section fiber is determined based on the self-image effect through the simulation. Due to variation characteristics of the refractive index and absorption coefficient of MF under different magnetic fields, an effective method to improve the sensitivity of SMS fiber structure is realized based on the intensity modulation method. This sensor shows a high sensitivity up to 0.097 dB/Oe and a high modulation depth up to 78% in a relatively linear range, for the no-core fiber (NCF) with the diameter of 125 μm and length of 59.8 mm as the multimode section. This optical fiber sensor possesses advantages of low cost, ease of fabrication, high sensitivity, simple structure, and compact size, with great potential applications in measuring the magnetic field.


1990 ◽  
Author(s):  
Thaddeus G. Dziura ◽  
Y. J. Yang ◽  
S. C. Wang

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