- In this paper, a method for generating transverse band (UWB) pulses, the basis of which is a large-scale interferometer with a resonator of small silicone rings capable of changing paired configuration, is reported. Single-cycle, dual-bandwidth signals are generated at the time of the Picosecond pulse, and the small ring amplifier is modulated with square and Gaussian electric pulses, respectively. Microwave photonic systems that work with large optical components suffer from large size, high energy consumption, high cost, and vulnerability to environmental disturbances. Therefore, it is highly desirable to assemble the microwave photonic system on a single chip to make it more compact, cheap, and low-consumption. They have a low spectrum. One of its applications is in short-range wireless telecommunications and high power for wireless transmission of large multimedia data. It can also be used in low speed and power mode for IoT applications such as precision internal positioning. Unlike the WiFi or Bluetooth distance estimation, which is based on signal intensity, the bandwidth signal has a very narrow pulse width, similar to the radar pulse, which enables it to estimate the position using pulse forward time and 10 cm accuracy. With an intensified modulator based on silicon photonics, one can very hopefully generate an adjustable microwave signal on the chip.
W Zhang and J Yao, IEEE Journal of Quantum Electronics52, 1 (2016) 1.
J Yao, F Zeng, and Q Wang, Journal of Lightwave Technology25, 11 (2007) 3219.
Q Sun, L Zhou, L Lu, G Zhou, and J.Chen, IEEE Photonics Journal10, 6 (2018) 6602612.
R Yang, L Zhou, M Wang, H Zhu, and J Chen, Frontier of optoelectronics9, 3 (2016) 483.
Y Zhong et al., Photonics Research5, 6 (2017) 689.
L Zhuang, C G H Roeloffzen, A Meijerink, M Burla, and W C V Etten, Journal of Lightwave Technology28, 1 (2009) 19.
J Yao, IEEE Microwave Magazine, 10, 4 (2009) 82.
F Li, , Chips on indoor positioning and navigation, the key technology of intellectual devices of next generation.Available:https://mp.weixin.qq.com/s/VswdBtAifrpx69t7xG-ppw (2019).
Fed. Commun. Commission, Revision of Part 15 of the Commission’s Rules Regarding Ultra-Wideband Transmission Systems, Apr. 2002. Tech. Rep., ET-Docket 98-153, FCC02-48.
FIRA. What UWB Does. Available: https://www.firaconsortium.org/discover/what-uwb-does.
J Li et al., Optics Letters33, 3 (2008) 288.
E Zhou, X Xu, K Lui, and K K. Wong, IEEE Photonics Technology Letters22, 14 (2010) 1063.
L Pengxiao, C Hongwei, C Minghua, and X Shizhong, IEEE Photonics Journal4, 3 (2012) 805.
, F Zeng and Y Jianping, IEEE photonics technology letters 18,19 (2006): 2062-2064.
Q Wang and J Yao, Optics Express15, 22 (2007) 14667.
M Shehata, H Mostafa, and Y Ismail, Journal of Lightwave Technology36, 10 (2018) 2017.
H Feng et al., IEEE Photonics Journal, 6, 2 (2014) 1.
M Hongqian, W Muguang, and J Shuisheng, 15th International Conference on Optical Communications and Networks (ICOCN), (2016).
L Tsung-Yang et al., IEEE Journal of Selected Topics in Quantum Electronics, 19, 2 (2013) 8200312.
S T Abraha, C M Okonkwo, E Tangdiongga, and A M Koonen, Optics letters, 36, 12 (2011) 2363.
B Luo, J Dong, Y Yu, and X Zhang, IEEE Photonics Technology Letters24, 18 (2012) 1646.
Y Yue et al., Optics Letters, 37, 4, 551. Y Yue, H Huang, L Zhang, J Wang, J-Yuan Yang, O F Yilmaz, J S Levy, M Lipson, and A E Willner, Optics Letters 37, 4 (2012) 551.
Q Wang and J Yao, Electronics Letters42, 22 (2006) 1304.
V Moreno, M Rius, J Mora, M A Muriel, and J Capmany, IEEE Photonics Technology Letters26, 7 (2014) 690.
M Rius, V Moreno, J Mora, M A Muriel, and J Capmany, 15th International Conference on Transparent Optical Networks (ICTON), 2013,
H Shao, W Chen, Y Zhao, H Chi, J Yang, and X Jiang, Optics Express20, 7 (2012) 7398.
K Xu et al., IEEE Photonics Technology Letters28, 3 (2016) 248.
L Zhou and A W Poon, Optics Letters,32, 7 (2007) 781.
M F Limonov, M V Rybin, A N Poddubny, and Y S. Kivshar, Nature Photonic11 (2017) 543.
G. Zhou, L. Zhou, Y. Zhou, Y. Zhong, S. Liu, Y. Guo, L. Liu, J. Chen, "Silicon Mach-Zehnder modulator using a highly-efficient L-Shape PN junction" Tenth International Conference on Information Optics and Photonics (CIOP 2018.
Afroozeh,A. (2021). Optical pulses generation of single-cycle and dual-UWB
using square and Gaussian electric pulses. Iranian Journal of Physics Research, 21(1), 189-196. doi: 10.47176/ijpr.21.1.41050
MLA
Afroozeh,A. . "Optical pulses generation of single-cycle and dual-UWB
using square and Gaussian electric pulses", Iranian Journal of Physics Research, 21, 1, 2021, 189-196. doi: 10.47176/ijpr.21.1.41050
HARVARD
Afroozeh A. (2021). 'Optical pulses generation of single-cycle and dual-UWB
using square and Gaussian electric pulses', Iranian Journal of Physics Research, 21(1), pp. 189-196. doi: 10.47176/ijpr.21.1.41050
CHICAGO
A. Afroozeh, "Optical pulses generation of single-cycle and dual-UWB
using square and Gaussian electric pulses," Iranian Journal of Physics Research, 21 1 (2021): 189-196, doi: 10.47176/ijpr.21.1.41050
VANCOUVER
Afroozeh A. Optical pulses generation of single-cycle and dual-UWB
using square and Gaussian electric pulses. Dear user; Recently we have changed our software to Sinaweb. If you had already registered with the old site, you may use the same USERNAME but you need to change your password. To do so at the first use, please choose, 2021; 21(1): 189-196. doi: 10.47176/ijpr.21.1.41050