Postdoctoral Recruitment for the 

School of Physics and Optoelectronic Engineering, Shenzhen University The School of Physics and Optoelectronic Engineering of Shenzhen University is now recruiting several celebrities for postdoctoral fellows at home and abroad. The specific requirements are as follows: 
1. Introduction to the 
School of Physics and Optoelectronic Engineering. , Measurement and Control Technology and Instruments, Nuclear Engineering and Nuclear Technology, 4 undergraduate majors, optical engineering, physics first-level discipline master’s degree, optical engineering first-level discipline doctoral program and optical engineering post-doctoral mobile station. Among them, the discipline of optical engineering was awarded the “Key Discipline of Climbing Peaks in Guangdong Province” in 2012, and was selected as the key construction discipline of high-level universities in Guangdong Province in 2015. It was rated as B+ in the fourth round of the Ministry of Education Discipline Evaluation in 2016, and ranked tied for the national ranking. nine. Optoelectronic Information Science and Engineering is a specialty of Guangdong Province. The college has formed a complete talent training system of undergraduate-master-doctor-postdoctoral mobile station. 
2. Research direction and cooperative tutor: 
Research direction Cooperative tutor Title Number of planned projects 
                                Project name Level Deadline 
Laser technology Wenqiao Associate professor Several municipal key points Long-term effective 
material chemistry Wenqiao Associate professor several city key Long-term effective 
nonlinear optics overseas Chinese Associate Professor Several city key points are valid for many years 
Nano Optics Wenqiao Associate Professor several city key points are valid for many years
THz Technology Wen Qiao Associate Professor Several Municipal Key Points Long-term Effective 
Spectroscopy Technology Wen Qiao Associate Professor Several City Key Points Long-term Effective The 
research results of the research group in recent years: 
[1-14] 
[1] N. Xu, HB Li, YY Gan, HL Chen, WJ Li, F. Zhang, XT Jiang, YH Shi, JF Liu, Q. Wen, H. Zhang, Zero-Dimensional MXene-Based Optical Devices for Ultrafast and Ultranarrow Photonics Applications, Adv Sci. https://doi.org/ 10.1002/advs.202002209
[2] YH Shi, N. Xu, Q. Wen, Ti2CTx (T=O, OH or F) Nanosheets as New Broadband Saturable Absorber for Ultrafast Photonics, J Lightwave Technol. 38 (2020) 1975-1980 . https://doi.org/10.1109/jlt.2020.2973805
[3] H. Long, YH Shi, Q. Wen, YH Tsang, Ultrafast laser pulse (115 fs) generation by using direct bandgap ultrasmall 2D GaTe quantum dots, J Mater Chem C. 7 (2019) 5937-5944. https: //doi.org/10.1039/c9tc00554d
[4] ZH Sun, XT Jiang, Q. Wen, WJ Li, H. Zhang, Single frequency fiber laser based on an ultrathin metal-organic framework, J Mater Chem C. 7 (2019 ) 4662-4666. https://doi.org/10.1039/c8tc03780a
[5] GW Liang, LL Tao, YH Tsang, LH Zeng, X. Liu, J. Li, JL Qu, Q. Wen, Optical limiting properties of a few-layer MoS2/PMMA composite under excitation of ultrafast laser pulses, J Mater Chem C. 7 (2019) 495-502. https://doi.org/10.1039/c8tc04200d
[6] YH Shi, H. Long, SX Liu, YH Tsang, Q. Wen, Ultrasmall 2D NbSe2 based quantum dots used for low threshold ultrafast lasers, J Mater Chem C. 6 (2018) 12638-12642. https:// doi.org/10.1039/c8tc04635b
[7] XT Jiang, LJ Zhang, SX Liu, YY Zhang, ZL He, WJ Li, F. Zhang, YH Shi, W. Lu, Y. Li, Q. Wen, JG Li, J. Feng, SC Ruan, YJ Zeng, X. Zhu, YR Lu, H. Zhang, Ultrathin Metal-Organic Framework: An Emerging Broadband Nonlinear Optical Material for Ultrafast Photonics, Advanced Optical Materials. 6 (2018). https:// doi.org/10.1002/adom.201800561
[8] GW Liang, LH Zeng, YH Tsang, LL Tao, CY Tang, PK Cheng, H. Long, X. Liu, J. Li, JL Qu, Q. Wen, Technique and model for modifying the saturable absorption (SA ) properties of 2D nanofilms by considering interband exciton recombination, J Mater Chem C. 6 (2018). https://doi.org/10.1039/c8tc00498f
[9] XT Jiang, SX Liu, WY Liang, SJ Luo, ZL He, YQ Ge, HD Wang, R. Cao, F. Zhang, Q. Wen, JQ Li, QL Bao, DY Fan, H. Zhang, Broadband Nonlinear Photonics in Few-Layer MXene Ti3C2Tx (T = F, O, or OH) , Laser Photonics Rev. 12 (2018). https://doi.org/10.1002/lpor.201700229
[10] SX Liu, ZJ Li, YQ Ge, HD Wang, R. Yue, XT Jiang, JQ Li, Q. Wen, H. Zhang, Graphene/phosphorene nano-heterojunction: facile synthesis, nonlinear optics, and ultrafast photonics applications with enhanced performance, Photonics Res. 5 (2017) 662-668. https://doi.org/10.1364/prj.5.000662
[11] CY Tang, PK Cheng, L. Tao, H. Long, LH Zeng, Q. Wen, YH Tsang, Passively Q-Switched Nd: YVO4 Laser Using WS2 Saturable Absorber Fabricated by Radio Frequency Magnetron Sputtering Deposition, J Lightwave Technol. 35 (2017) 4120-4124. https://doi.org/10.1109/jlt.2017.2726138
[12] H. Long, LL Tao, CY Tang, HY Tam, Q. Wen, YH Tsang, Effect of laser illumination on the morphology and optical property of few-layer MoS2 nanosheet in NMP and PMMA, J Mater Chem C. 4 (2016) 678-683. https://doi.org/10.1039/c5tc02823j
[13] Q. Wen, XJ Zhang, ZS Liang, YG Wang, LQ Sun, HB Niu, Simple method of optical ring cavity design and its applications , Opt Express. 22 (2014) 14782-14791. https://doi.org/10.1364/oe.22.014782
[14] Q. Wen, XJ Zhang, YG Wang, LQ Sun, HB Niu, A simple method for astigmatic compensation of folded resonator without Brewster window, Opt Express. 22 (2014) 2309-2316. https://doi.org/10.1364/oe.22.002309

Teacher Wen Qiao has a scientific research cooperation relationship with the Hong Kong Polytechnic University, and the project funds are sufficient, The scientific research hardware facilities are complete, and we look forward to your joining, so that our research group can shine. 
3. Application conditions
(1) Persons under the age of 35 and who have obtained a doctorate degree for no more than 3 years, applicants cannot apply for a mobile station in the same first-level discipline of their doctoral graduate unit to engage in post-doctoral research. 
(2) Have strong scientific research and innovation ability and teamwork spirit. 
(3) Have good academic ethics, rigorous scientific attitude, good health, and competent job requirements. 
(4) Priority will be given to applicants who have achieved significant scientific research results. 
(5) Have strong English reading and writing skills. 
4. Employment period treatment The 
comprehensive annual salary of Shenzhen University (general) postdoctoral fellow is about 320,000 yuan. 
(1) Benefits of Shenzhen City 
1. The municipal government will grant a living allowance of 180,000 yuan per person per year to post-doctoral candidates who have completed the preliminary examination and mid-term examination during the station, and the total amount shall not exceed 360,000 yuan. 
2. The municipal government will grant 300,000 yuan of subsidy to post-doctoral fellows out of the station for scientific research investment or early start-up expenses. 
3. Those who meet the qualifications of Shenzhen reserve talents can receive a housing subsidy of 1.6 million yuan. 
4. If Shenzhen’s post-doctoral talent funding policy is adjusted, the latest document regulations shall prevail. 
5. For more preferential policies, please consult the website of the Municipal Human Resources and Social Security Bureau: 
http://www.szhrss.gov.cn/ztfw/gccrc/

(2) Shenzhen University treatment 
1. Shenzhen University provides a comprehensive annual salary of about 140,000 . 
2. Shenzhen University’s outstanding postdoctoral talent training plan: in the entry stage, awards for outstanding postdoctoral students will be implemented; in the exit stage, postdoctoral fellows who have achieved outstanding scientific research results during their stay will be rewarded for scientific research. 
3. Eligible postdoctoral fellows can apply for professional and technical qualifications. 
4. Outstanding post-doctoral fellows who meet the requirements of the school’s policies can apply for conversion to teachers. 
5. During the post-doctorate’s stay in the station, they can apply for funding for scientific research projects at all levels.
6. Post-doctoral personnel entering the station can choose to settle in Shenzhen voluntarily. For those who choose to settle in Shenzhen, their spouses and minor children can apply for moving in. The enrollment and enrollment of post-doctorate children shall be implemented in accordance with Shenzhen’s relevant regulations. 
(3) Laboratory treatment: 
1. The laboratory will issue a scientific research allowance of 2,000 yuan per month (deducted and issued by the school from the cooperative tutor’s scientific research project). 
2. During the post-doctoral research work, you can conduct cooperative research with domestic or foreign related units according to scientific research needs. 
3. There will be additional subsidies for researchers who have made outstanding contributions to laboratory projects and participate in horizontal projects. 
V. Job Responsibilities 
(1) Assist the cooperating tutors to improve the laboratory construction and assist the cooperating tutors to complete scientific research projects; 
(2) Carry out relevant work according to the application direction, publish papers and articles independently or cooperatively. (1 SCI article should be published as the first author in the JCR1 district publication during the station; or 2 JCR2 publication articles). 
(3) Seriously fulfill the management regulations of the laboratory and Shenzhen University. 
6. How to apply 
(1) Candidates will send their resumes and electronic documents of representative achievements in the past 5 years reflecting their academic level to the contact person. 
(2) Those who pass the preliminary examination will be notified for an interview. For the interview, please prepare the following materials for review by the expert group: 
 Resume 
 Copy of degree certificate 
 Copy of representative achievements in the past 5 years reflecting your academic level 
 Recommendation letter of doctoral supervisor 
7. Contact 
        person: Associate Professor Wenqiao, PhD supervisor, Ph.D. 
        Tel: 0755 26531595 
        E-mail: [email protected]

8. Deadline for application: 
long-term validity, admission based on merit. 

Notes: 
1. Please carefully verify whether the cooperating tutor meets the enrollment requirements, and signing and sealing is deemed to agree with the content of the document. 
2. The paper and electronic versions of this document shall be submitted by the college to the management office of the Ph.D. 

[1] N. Xu, HB Li, YY Gan, HL Chen, WJ Li, F. Zhang, XT Jiang, YH Shi, JF Liu, Q. Wen, H. Zhang, Zero-Dimensional MXene-Based Optical Devices for Ultrafast and Ultranarrow Photonics Applications, Adv Sci. https://doi.org/10.1002/advs.202002209

[2] YH Shi, N. Xu, Q. Wen, Ti2CTx (T=O, OH or F) Nanosheets as New Broadband Saturable Absorber for Ultrafast Photonics, J Lightwave Technol. 38 (2020) 1975-1980. https://doi.org/10.1109/jlt.2020.2973805

[3] H. Long, YH Shi, Q. Wen, YH Tsang, Ultrafast laser pulse (115 fs) generation by using direct bandgap ultrasmall 2D GaTe quantum dots, J Mater Chem C. 7 (2019) 5937-5944. https: //doi.org/10.1039/c9tc00554d

[4] ZH Sun, XT Jiang, Q. Wen, WJ Li, H. Zhang, Single frequency fiber laser based on an ultrathin metal-organic framework, J Mater Chem C. 7 (2019 ) 4662-4666. https://doi.org/10.1039/c8tc03780a

[5] GW Liang, LL Tao, YH Tsang, LH Zeng, X. Liu, J. Li, JL Qu, Q. Wen, Optical limiting properties of a few-layer MoS2/PMMA composite under excitation of ultrafast laser pulses, J Mater Chem C. 7 (2019) 495-502. https://doi.org/10.1039/c8tc04200d

[6] YH Shi, H. Long, SX Liu, YH Tsang, Q. Wen, Ultrasmall 2D NbSe2 based quantum dots used for low threshold ultrafast lasers, J Mater Chem C. 6 (2018) 12638-12642. https:// doi.org/10.1039/c8tc04635b

[7] XT Jiang, LJ Zhang, SX Liu, YY Zhang, ZL He, WJ Li, F. Zhang, YH Shi, W. Lu, Y. Li, Q. Wen, JG Li, J. Feng, SC Ruan, YJ Zeng, X. Zhu, YR Lu, H. Zhang, Ultrathin Metal-Organic Framework: An Emerging Broadband Nonlinear Optical Material for Ultrafast Photonics, Advanced Optical Materials. 6 (2018). https:// doi.org/10.1002/adom.201800561

[8] GW Liang, LH Zeng, YH Tsang, LL Tao, CY Tang, PK Cheng, H. Long, X. Liu, J. Li, JL Qu, Q. Wen, Technique and model for modifying the saturable absorption (SA ) properties of 2D nanofilms by considering interband exciton recombination, J Mater Chem C. 6 (2018). https://doi.org/10.1039/c8tc00498f

[9] XT Jiang, SX Liu, WY Liang, SJ Luo, ZL He, YQ Ge, HD Wang, R. Cao, F. Zhang, Q. Wen, JQ Li, QL Bao, DY Fan, H. Zhang, Broadband Nonlinear Photonics in Few-Layer MXene Ti3C2Tx (T = F, O, or OH) , Laser Photonics Rev. 12 (2018). https://doi.org/10.1002/lpor.201700229

[10] SX Liu, ZJ Li, YQ Ge, HD Wang, R. Yue, XT Jiang, JQ Li, Q. Wen, H. Zhang, Graphene/phosphorene nano-heterojunction: facile synthesis, nonlinear optics, and ultrafast photonics applications with enhanced performance, Photonics Res. 5 (2017) 662-668. https://doi.org/10.1364/prj.5.000662

[11] CY Tang, PK Cheng, L. Tao, H. Long, LH Zeng, Q. Wen, YH Tsang, Passively Q-Switched Nd: YVO4 Laser Using WS2 Saturable Absorber Fabricated by Radio Frequency Magnetron Sputtering Deposition, J Lightwave Technol. 35 (2017) 4120-4124. https://doi.org/10.1109/jlt.2017.2726138

[12] H. Long, LL Tao, CY Tang, HY Tam, Q. Wen, YH Tsang, Effect of laser illumination on the morphology and optical property of few-layer MoS2 nanosheet in NMP and PMMA, J Mater Chem C. 4 (2016) 678-683. https://doi.org/10.1039/c5tc02823j

[13] Q. Wen, XJ Zhang, ZS Liang, YG Wang, LQ Sun, HB Niu, Simple method of optical ring cavity design and its applications , Opt Express. 22 (2014) 14782-14791. https://doi.org/10.1364/oe.22.014782

[14] Q. Wen, XJ Zhang, YG Wang, LQ Sun, HB Niu, A simple method for astigmatic compensation of folded resonator without Brewster window, Opt Express. 22 (2014) 2309-2316. https://doi.org/10.1364/oe.22.002309

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