周鹏(讲师)

作者:发布者:李芳审核人:发布时间:2026-03-26浏览次数:824

»姓名:周鹏

»系属:电工电子学教学中心

»学位:博士

»职称:讲师

»专业:电子信息

»导师类别:硕士生导师

»电子邮箱:pengzhou@upc.edu.cn

»联系电话:18811231732

»通讯地址:山东省青岛市黄岛区长江西路66号

»概况

◎研究方向

量子精密测量与传感,芯片化原子磁强计,微纳加热器件,无损检测。

◎教育经历

2021年9月—2026年1月,北京航空航天大学,博士。

2020年9月—2021年6月,北京航空航天大学,硕士。

2016年9月—2020年6月,哈尔滨工业大学,学士。

◎工作经历

2026年1月至今,中国石油大学(华东),控制科学与工程学院,讲师。

◎学术兼职

担任《Measurement》《IEEE Transactions on Instrumentation and Measurement》《Sensors and Actuators A: Physical》等期刊审稿人。

◎指导研究生及博士后

协助指导博士生:张萌、张涓。

协助指导本研生:张敬昊。

倡导开放平等的学术氛围与协同成长的培养理念,注重个性化指导,全力支持每位成员的学术探索与长远发展。课题组科研经费充足,实验条件完善,诚邀对量子传感、芯片化原子磁强计、电磁无损检测以及智能光电感知技术感兴趣的同学联系(每年招收硕士研究生 1–2 名;常年欢迎优秀本科生加入,提前感受科研乐趣,支持大创与竞赛)。更多信息详见主页:https://www.x-mol.com/groups/dzzhang

◎承担项目

国家自然科学基金青年科学基金项目(C类),芯片化原子磁强计光热磁耦合致噪机理与主动解耦研究,2027.01-2029.12,30万元,主持;

山东省自然科学基金青年项目,芯片化原子磁强计中光-热-磁多场耦合干扰抑制机理研究,2026.07-2029.07,13万元,主持;

中国石油科技创新基金项目,面向井孔多尺度电磁远探测的芯片化原子磁传感机制与层析成像方法,2026.07-2029.07,50万元,主持;

自主创新科研计划项目(理工科)青年基金,面向极弱磁场测量的芯片化磁强计光源无磁封装方法与低频噪声抑制研究,2026.03-2029.03,15万元,主持;

自主创新科研计划项目(理工科)科技专项,面向随钻电磁波远探测的芯片化射频原子磁传感与抗振协同调控机制研究,2026.01-2027.12,20万元,参与;


◎论文

[1] Zhou P, Zhang G, Liang Z, Hu J, Liu L, Hu G, Wang A, Du P, Ye M. A non-magnetic packaged Vertical-Cavity Surface-Emitting Laser for SERF magnetometers[J]. Measurement, 2025, 243: 116381.

[2] Zhou P, Xu F, Liang Z, Hu J, Liu L, Hu G, Hou G, Xu Y, Ye M. Laser stabilization via absorption spectroscopy and active temperature feedback for chip-scale atomic magnetometer[J]. Optics & Laser Technology, 2026, 193: 114250.

[3] Zhou P, Wang Y, Hu Z, Hu G, Wang A, Liang Z, Hu J, Liu L, Ye M. On-chip integrated non-magnetic heating devices for quantum sensing applications[J]. Measurement, 2024, 232: 114578.

[4] Zhou P, Hu Z, Liang Z, Hu J, Liu L, Hu G, Xu Y, Ye M. Chip-scale non-magnetic ITO heating device for SERF atomic magnetometers[J]. Sensors and Actuators A: Physical, 2025, 396: 117133.

[5] Zhou P, Quan W, Xu F, Liang Z, Hu J, Liu L, Hu G, Xu Y, Ye M. Bandwidth extension enabled by modulated VCSEL pumping for quantum sensing application[J]. IEEE Transactions on Instrumentation and Measurement, 2025.

[6] Zhou P, Quan W, Wei K, Liang Z, Hu J, Liu L, Hu G, Wang A, Ye M. Application of VCSEL in bio-sensing atomic magnetometers[J]. Biosensors, 2022, 12(12): 1098.

[7] Xu Y, Chai Z, Meng X, Xu Y, Sun J, Zhou P. Silicon Nitride Photonics Enabled Optical Pumping for Optically Pumped Magnetometer[J]. Laser & Photonics Reviews, 2025, 19(10): 2402292.

[8] Wang Z, Liang Z, Hu J, Zhou P, Liu L, Hu G, Wang W, Ye M. Sensing Applications of PT Symmetry in Non-Hermitian Photonic Systems[J]. Advanced Quantum Technologies, 2025, 8(1): 2400349.

[9] Wang A, Hu G, Zhou P, Wang Y, Yang J, Liang Z, Hu J, Liu L, Ye M. On-chip integrated high-performance bi-planar coils for chip-scale atomic magnetometers[J]. Sensors and Actuators A: Physical, 2025, 384: 116260.

[10] Liang Z, Zhou B, Lu J, Liu Y, Hu J, Zhou P, Wang W, Liu L, Hu G, Ye M. Metasurface enabled on-chip double-beam scheme for SERF atomic magnetometer[J]. Optics Communications, 2022, 525: 128850.

[11] Liang Z, Zhang Y, Long T, Li B, Hu J, Zhou P, Liu L, Hu G, Ye M, Wang Y. Four-channel miniaturized SERF magnetometer with spatial inhomogeneous atomic polarization[J]. Optics & Laser Technology, 2025, 181: 112013.

[12] Liang Z, Zhang Y, Liu L, Hu J, Zhou P, Hu G, Hou G, Ye M. Sub-Ensemble Isolation in SERF Magnetometry Enabled by Micrometer-Scale Polarization Control[J]. arXiv preprint arXiv:2506.23160, 2025.

[13] Liang Z, Long T, Liu L, Hu J, Zhou P, Hu G, Wang Y, Ye M. Space-variant polarization distribution mitigates AC-Stark shifts in a SERF atomic magnetometer[J]. ACS Photonics, 2025, 12(5): 2522-2529.

[14] Liang Z, Hu J, Zhou P, Liu L, Hu G, Wang A, Ye M. Metasurface-integrated elliptically polarized laser-pumped SERF magnetometers[J]. Microsystems & Nanoengineering, 2024, 10(1): 101.

[15] Hu J, Lu J, Liang Z, Liu L, Wang W, Zhou P, Ye M. Integrated polarization-splitting grating coupler for chip-scale atomic magnetometer[J]. Biosensors, 2022, 12(7): 529.

[16] Hu J, Liang Z, Zhou P, Liu L, Hu G, Du P, Ye M. Integrated optical rotation detection scheme for chip-scale atomic magnetometer empowered by silicon-rich SiNx metalens[J]. Optics letters, 2024, 49(12): 3364-3367.

[17] Hu J, Liang Z, Zhou P, Liu L, Hu G, Ye M. Integrated optical probing scheme enabled by localized-interference metasurface for chip-scale atomic magnetometer[J]. Nanophotonics, 2024, 13(23): 4231-4242.

[18] Hu J, Liang Z, Zhou P, Liu L, Hu G, Ye M. Chip-Scale Optically Pumped Magnetometry Enabled by Tailorable Elliptical Dichroism Metasurface[J]. Advanced Optical Materials, 2024, 12(25): 2400594.

[19] Hu J, Liang Z, Zhou P, Liu L, Hu G, Ye M. Chip-scale single-beam atomic magnetometer enabled by spin-selective interference meta-optics[J]. ACS Photonics, 2024, 12(1): 282-292.

[20] Hu G, Ye M, Wang A, Zhou P, Hu J, Liu L, Liang Z, Quan W. Design of micro-integrated self-shielded biplanar coils based on multipole moment expansion[J]. IEEE Transactions on Instrumentation and Measurement, 2025.

◎专利

[1] 叶茂、周鹏、等,一种可控气压的碱金属气室激光熔断外腔充制装置,中国,申请号:202410659350.2(已受理)

[2] 叶茂、周鹏、等,一种集成准直透镜的无磁型VCSEL激光器封装结构,中国,申请号:202510041216.0(已受理)

[3] 叶茂、周鹏、等,一种用于芯片化原子磁强计的控制电路,中国,申请号:202510195472.5(已受理)