教育经历
· 2012.9 - 2017.7
中国科学院物理研究所 - 凝聚态物理 - 博士
· 2008.9 - 2012.6
山东大学物理学院 - 物理学 - 学士
工作经历
· 2022.11- 至今
天津大学微电子学院 → 英才副教授
· 2017.10 - 2022.10
美国马里兰大学 → 博士后
研究方向
· 新型量子材料与器件
· 集成光神经网络与智能光计算
· 高通量技术和机器学习方法
授课信息
· 数字集成电路设计
社会兼职
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· 学术桥评审专家库成员
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· Guest Editor of Special Issue in Symmetry: "Symmetry and New Advances in Unconventional Superconductors"
个人简介
于和善,天津大学微电子学院英才副教授,主要研究方向为发挥高通量技术和机器学习方法特色,围绕后摩尔时代集成电路产业发展的新材料、新原理及新器件开展探索与研究。目前在Nature, Nature communications, Science advances等期刊发表SCI论文30多篇,引用次数1000多次;已申请专利2项。课题组具有扎实的研究基础,欢迎物理、材料、微电子、计算机和集成电路等专业的学生加入。
学术成果
论文成果
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[1]Novel nanocomposite-superlattices for low energy and high stability nanoscale phase- change memory
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[2]Freeform direct-write and rewritable photonic integrated circuits in phase-change thin films
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[4]Magnetic phase diagram mapping in Fe1−xRhx composition-spread thin films
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[6]Scaling of the strange-metal scattering in unconventional superconductors
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[7]Harnessing Optoelectronic Noises in a Photonic Generative Network
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[8]Deep Learning for Rapid Analysis of Spectroscopic Ellipsometry Data
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[10]Magnetoelastic Gilbert damping in magnetortrictive Fe0.7Ga0.3 thin film
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[11]Programmable Phase-change Metasurface for Multimode Photonic Convolutional Neural Network
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[12]Quantum criticality tuned by magnetic field in optimally electron-doped cuprate thin films
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[13]Two-magnon frequency-pulling effect in ferromagnetic resonance
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[14]On-the-fly Closed-Loop materials discovery via Bayesian active learning
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[15]Self-organization of various ‘phase-seperated’ nanostructures in a single chemical vapor deposition
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[16]Tuning the Hysteresis of a Metal-Insulator Transition via Lattice Compatibility
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[18]Bosonic excitations and electron pairing in an electron-doped cuprate superconductor
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[19]Low-Loss Integrated Photonic Switch Using Subwavelength Patterned Phase Change Material
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[20]The effects of oxygen in spinel oxide Li1+xTi2−xO4−δ thin films
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[22]Healing effect of controlled anti-electromigration on conventional and high-Tc superconducting na
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[23]Dielectric functions of La-based cuprate superconductors for visible and near-infrared wavelength
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[25]Anomalous in-plane magnetoresistance of electron-doped cuprate La2-xCexCuO4±δ
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[26]Manipulating composition gradient in cuprate superconducting thin films
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[27]Transport anomalies and quantum criticality in electron-doped cuprate superconductors
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[28]An ellipsometric study of the optical properties of n-type superconductor La1.9Ce0.1CuO4
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[29]A brief analysis of annealing process for electron-doped cuprate superconductors
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[30]Anomalous magnetoresistance in the spinel superconductor LiTi2O4
专利成果
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[1]探针式快速输运测量系统