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J154. Zijian Cheng, X. Zhang, Gaoming Xu, Low Complexity Digital Pre-Distortion for Multi-Band Radio over Fiber Systems, IEEE  Microwave and Wireless Technology Letters, May 2024.

J153. Qingtao Chen, Xiupu Zhang, Mohammad S. Sharawi, Raman Kashyap, Advances in High-Speed, High-Power Photodiodes: from Fundamentals to Applications, MPDI Appl. Sci. 2024, 14(8), 3410; https://doi.org/10.3390/app14083410,  March 2024.

J152. GRU-attention Model for Linearizing Millimeter-Wave Transmitters in Vehicle to Satellite Communication Systems, IEEE Vehicular Techology, March 2024

J151. G. Chen, F. Huang, X Zhang, Vertical coupling effect on gain bandwidth of chirped InAs/InP quantum dot structures, vol. 60, no. 2, Art no. 2000309, IEEE J. Quantum Electronics, April 2024

J150. G. Liu et al., "Monolithic InAs/InP Quantum Dash Mode-Locked Lasers for Millimeter-Wave-Over-Fiber Mobile Fronthaul Systems," in IEEE Journal of Selected Topics in Quantum Electronics, vol. 29, no. 6, Nov.-Dec. 2023, doi: 10.1109/JSTQE.2023.3273539.

J149. J. Chen, D. Shen, X. Zhang, Bandstop filtering for integrated substrate gap waveguide high-gain and wideband slot antenna for 5G, International Journal of RF and Microwave Computer-Aided Engineering, v 32, n 9, September 2022.

J148. G. Xu, X. Zhang, Twin Nonlinearity Generator based Analog Predistorter for Small-Cell Power Amplifiers, International Journal of RF and Microwave Computer-Aided Engineering, vol. 32, no. 12, e23551, Dec. 2022

J147. Xiaoran Xie*, Xiupu Zhang, Pre-Filtered and Post-Filtered 1-bit Delta Sigma Modulator for Fronthaul Downlinks, Optics Communications, vol. 510, May 2022, 127908

J146. Khan Zeb, et al, Xiupu Zhang, Broadband Optical Heterodyne Millimeter Wave-over-Fiber Wireless Links Based on a Quantum Dash Dual-Wavelength DFB Laser, J. Lightwave Technology, vol. 40, no. 12, pp. 3698-3708, 15 June15, 2022, doi: 10.1109/JLT.2022.3154652.

J145. Y. Mao, Khan Zeb, Z. Lu, 1 J. Liu, 1 G. Liu, P. J. Poole, M. Rahim, G. Pakulski, P. Barrios,W. Jiang and John Zhang, High Performance InAs/InP Quantum Dash Frequency
Comb Laser for High Capacity RoF Wireless Networks, Sensors & Transducers, Vol. 255, Issue 1, pp. 24-34, January 2022.

J144. F. Huang*, X. Zhang, Impact of Excited States Transitions on Polarization Property of InAs/InP Quantum Dots, IEEE J. Quantum Electronics, vol. 58, no. 1, pp. 1-9, Feb. 2022

J143. J. Chen, D. Shen, X. Zhang, Integrated Substrate Groove Gap Waveguide and Application for Filter Design,  International Journal of RF and Microwave Computer-Aided Engineering, vol.31, no. 11, Nov. 2021, https://doi.org/10.1002/mmce.22830

J142. K. Zeb*, Z. Lu, J. Liu, Y. Mao, G. Liu, P. J. Poole, M. Rahim, G. Pakulski, P. Barrios, W. Jiang, and X. Zhang, InAs/InP quantum dash buried heterostructure mode-locked laser for high capacity fiber-wireless integrated 5G new radio fronthaul systems, Opt. Express 29 (11), 16164-16174 (May 2021)

J141. Y. Sa, D. Shen, X. Zhang Characteristic impedance of integrated substrate gap waveguide, International Journal of RF and Microwave omputer-Aided Engineering, vol. 31, no. 8, Aug. 2021, https://doi.org/10.1002/mmce22716

J140. L. Liu, Y. Liu, X. Zhang, B. Liu, Xiupu Zhang, Low phase noise and quasi-tunable millimeter-wave generator using a passively InAs/InP mode-locked quantum dot laser, Optoelectronics Letters, v 16, n 6, p 441-5, Nov. 2020.

J139. J. Xu*, X. Zhang, A. Kishk, InGaAs/InP evanescently coupled one-sided junction waveguide photodiode design, Optical and Quantum Electronics, vol. 52, art. 266, 2020.

J138. X. Zhang, H. Sun*, T. Liu, Y. Hou, Impact of indirect mode coupling on planar lightwave circuit based mode converters/multiplexers, Optics Communications, vol. 465, art. 125608, June 2020.

J137. F. Huang*, Y. Xiong*, X. Zhang, Self-assembled InAs/InGaAsP/InP quantum dots: intraband relaxation impacted by ultrathin GaP sublayer, J. of Applied Physics, vol.127, no. 12, https://doi.org/10.1063/1.5132965, 2020.

J136. M. Rahim, K. Zeb*, Z. G. Lu, G. Pakulski, J. R. Liu,1 P. J. Poole, C. Y. Song, P. J. Barrios, W. H. Jiang, and X. Zhang, Monolithic InAs/InP quantum dash dual-wavelength DFB laser with ultra-low noise common cavity modes for millimeter-wave applications, Optics Express Vol. 27, Issue 24, pp. 35368-35375 (2019) •https://doi.org/10.1364/OE.27.035368

J135. Y. Xiong*, X. Zhang, Two-state lasing at room temperature in InAs/InP quantum dots, J. Applied Physics126, 133102 (2019); https://doi.org/10.1063/1.5110316

J134. C. Ma, D. Shen, X. Zhang, Conical double-core structure LPmn mode converter, IEEE Photonics J. vol. 11, no. 5, 7103309, Nov. 2019

J133. J. Zhang*, X. Zhang, A. Kishk, Design of substrate integrated gap waveguide and their transitions to microstrip line, for millimeter-wave applications, IEEE Access, vol. 7, pp. 154268 - 154276,  2019

J132 K. Zeb*, X. Zhang, Z. Lu, High capacity mode division multiplexing based MIMO enabled all-optical analogue millimeter-wave over fiber fronthaul architecture for 5G and beyond, IEEE Access vol. 7, pp. 89522 - 89533, July 2019.

J131. C. Ma, Z. Ma,  X. Zhang, Millimeter-Wave Circularly Polarized Array Antenna Using Substrate Integrated Gap Waveguide Sequentially Rotating Phase Feed, IEEE Antennas and Wireless Propagation Letters, vol. 18, no. 6, pp. 1124-1128,  June 2019

J130. G. Xu, T. Liu, Y. Ye, J. Huang, X. Zhang, A Memory Term Reduction Approach for Digital Pre-Distortion Using the Attention Mechanism, IEEE Access vol.7 pp. 38185 - 38194, March 2019.

J129. Y. Xiong*, X. Zhang, InAs/InP qutantum dots stacking: impact of spacer layer on optical properties, J. of Applied Physics, 125, 093103 (2019); https://doi.org/10.1063/1.5082722

J128. G. Xu, T. Liu, Y. Ye, X. Zhang, Hybrid harmonic-intermodulation distortion behavioral model for shortwave power amplifiers, International Journal of RF and Microwave Computer-Aided Engineering, March 2019 https://doi.org/10.1002/mmce.21718

J127. D. Shen, C. Ma, H. Yuan, W. Ren, and Xiupu Zhang, A Novel Broadband LP01-LP02 Mode Converter for O-, E-, S-, C-, L- and U-Band, Applied Optics, vol. 58, no. 4 pp.1185-1192, 2019.

J126. J. Xu*, Xiupu Zhang, A. Kishk, Design of high speed InGaAs/InP one-sided junction photodiodes with low junction capacitance, Optics Communications, vol. 437, pp. 321-329, 2019

J125. D. Shen, K. Wang, X. Zhang, A Substrate Integrated Gap Waveguide Based Wideband 3-dB Coupler for 5G Applications, IEEE Access No.6, pp. 66798 – 66806, 2018.

J124. J. Xu*, X. Zhang, A. Kishk, Design of modified InGaAs/InP one-sided junction photodiodes with improved response at high light intensity, Applied Optics, vol. 57, no. 31, pp. 9365-9374, 2018.

J123. X. Chen*, Y. Xiong, X. Zhang, Interaction of Self-Assembled InAs/InGaAsP/InP (001) Quantum Dots, Optics Communications, Vol. 429, pp. 18-28, Dec. 2018.

J122. H. Mellah*, X. Zhang, A Universal LP01 to LPlm Mode Converter Based on a Bulk Circular Waveguide, OSA Continuum, vol.1 No. 2, pp. 426-437, Aug. 2018

J121. Dongya Shen, Chaojun Ma, Wenping Ren, Xiupu Zhang, Zuhui Ma, Rongrong Qian, A Low-Profile Substrate Integrated Gap Waveguide Fed Magnetoelectric Dipole, IEEE Antennas and Wireless Propagation Letters, Vol. 17, no. 8, pp. 1373 – 1376, Aug. 2018.

J120. Weijie Tang, M. Hui, T. Liu, D. Shen, Xiupu Zhang, A Simple Envelope-Assisted RF/IF Digital Predistortion Model for Broadband RoF Fronthaul Transmission, IEEE/OSA J. Lightwave Technology, vol. 36, no. 19, pp. 4305 - 4311, Oct. 2018

J119. J. Zhang, X. Zhang, A. Kishk, Broadband 60 GHz Antennas Fed by Substrate Integrated Gap Waveguides, IEEE Transactions on Antennas and Propagation, vol. 66, no. 7, pp. 3261 - 3270, April 2018.

J118. Hakim Mellah, Seyed Mohammad Mirjalili, Xiupu Zhang, Design Optimization of a Waveguide Based LP01 to LP0m Mode Converter by using artificial intelligence technique, IET Electronics Letter, vol. 54, no. 11. 31 May 2018, p. 703 – 705, 2018.

J117. Xiupu Zhang, Broadband linearization for 5G fronthaul transmission (invited), Frontiers of Optoelectronics, vol. 11, no.2, pp 107–115, June 2018.

J116. Xiaoran Xie, Ming Hui, Taijun Liu, Xiupu Zhang, Hybrid Linearization of Broadband Radio over Fiber Transmission, IEEE Photonics Technol. Lett., vol. 30, no. 8, pp. 692 - 695, March 2018.

J115. Dongya Shen, Changhui Wang, Chuan Ma, Hakim Mellah, Xiupu Zhang , Hong Yuan, Wenping Ren, A novel optical waveguide LP01/LP02 mode converter, Optics Communications, Vol. 418, pp. 98–105, July 2018.

J114. Mohammad Javad Safdari, Seyed Mohammad Mirjalili, Pablo Bianucci, Xiupu Zhang, A Novel Multi-Objective Optimization Framework for Designing Photonic Crystal Sensors, Applied Optics, Vol. 57, No. 8 / 10, pp. 1950-1957, March 2018

J113. Ming Hui, Meng Zhang, Xingang Zhang, Xiaowei Zhu, Xiupu Zhang, Jiali Cheng, Time-division polynomial pre-distorter for linearisation of 1.5 T MRI power amplifier, The Journal of Engineering, Vol. 2017, Iss. 7, pp. 391–393, 2017.

J112. Yiling Xiong, Xiupu Zhang, Wavelength blue-shifting and gain spectral bandwidth of InAs/InP quantum dots for laser applications around 1.55 µm, IEEE J. Quantum Electronics, vol. 54, no. 1, 2000109, Feb. 2018

J111. Yiling Xiong, Xiupu Zhang, An Accurate Method of Modeling Self-Assembled InAs/InGaAsP/InP (001) Quantum Dot With Double-Capping Procedure, IEEE J. Quantum Electronics, vol. 53, no. 6, 2000611, Dec. 2017.

J110. Hakim Mellah, Jean-Philippe Bérubé, Réal Vallée, Xiupu Zhang, Fabrication of a LP01 to LP02 mode converter embedded in bulk glass using femtosecond direct inscription, Optics Communications, Vol. 410, March 2018, pp. 475-478.

J109. Qingtao Chen; Yongqing Huang; Xiupu Zhang; Xiaofeng Duan; Jiarui Fei; Xiaokai Ma; Tao Liu; Gang Wu; Kai Liu; Xiaomin Ren, Uni-Traveling-Carrier Photodetector With High-Reflectivity DBR Mirrors, IEEE Photonics Technology Letters, Volume: 29, Issue: 14, pp. 1203 - 1206, June 2017.

J108. LI LIU, XIUPU ZHANG, TIEFENG XU, ZHENXIANG DAI, SHIXUN DAI, AND TAIJUN LIU, Simple and seamless broadband optical frequency comb generation using an InAs/InP quantum dot laser, Optics Letters, vol. 42, no.6, pp. 1173-1175, March 2017.

J107. Li Liu, Xiupu Zhang, Tiefeng Xu, Zhenxiang Dai, Taijun Liu, Simple optical frequency comb generation using a passively mode-locked quantum dot laser, Optics Communications, vol.396, pp. 105-109, Feb. 2017.

Continued in Part 2