今日黑料

DepartmentDepartment of Physics and Engineering
Biola AffiliationsFaculty
Phone(562) 903-4852 (Department of Physics and Engineering)

Documents

Degrees

  • Ph.D., Physics, University of Illinois at Urbana-Champaign
  • M.S., Solid State Physics, Institute of Physics, Chinese Academy of Sciences
  • B.S., Theoretical Physics, Shandong University

Member of

Biography

Xidong Chen teaches calculus-based General Physics II and III and upper division physics courses, such as Classical Mechanics, Electrodynamics, Quantum Mechanics, and Advanced Physics Lab. He believes that students need to be active participants in the learning process and applies pedagogical approaches both in and out of the classroom to encourage students to do so. His Advanced Lab course is designed to emulate real research experience. Chen views studying physics as an act of worship and loves to share his passion for physics with his students.

Chen鈥檚 research currently focuses on density functional theory studies and high performance computing. His other research areas include surface growth dynamics, Monte Carlo simulations, and atomic force microscopy (AFM) studies of cell structures. Chen鈥檚 research has resulted in publications in peer-reviewed journals, such as Physical Review Letters and the Proceedings of the National Academy of Sciences.

Affiliations

  • American Physical Society
  • Materials Research Society
  • American Association for the Advancement of Science

Awards

  • Provost Faculty Award for Excellence in Scholarship, 今日黑料, 2016
  • Faculty Scholar of the Year, Cedarville University, 2010-2011.
  • Faculty Excellence in Teaching, Southwestern Ohio Council for Higher Education, 2008.

Publications

  • Chaoran Li, Xidong Chen, Dongxiang Wu, Jerzy T. Sadowski, and Guangwen Zhou, 鈥淣oncompact
    oxide-island growth induced by surface phase transition of the intermetallic NiAl
    during vacuum annealing鈥, Acta Materialia 201, 244 (2020)
  • Hailang Qin, Xidong Chen, Jonathan Li, Peter Sutter, and Guangwen Zhou, 鈥淎tomic-Step Induced Local Non-Equilibrium Effects on Surface Oxidation鈥, the Journal of Physical Chemistry C 121, 22846 (2017).
  • Hailang Qin, Xidong Chen, Peter Sutter, and Guangwen Zhou, 鈥淥xidation-driven Surface Dynamics on NiAl(100)鈥, the Proceedings of the National Academy of Sciences of the United States of America 112 (2), E103 (2015)
  • A. C. Y. Liu, Xidong Chen, D.-Y. Choi, and B. Luther-Davies, 鈥淎nnealing-induced Reduction in Nanoscale Heterogeneity of Thermally Evaporated Amorphous As 2 S 3 Films,鈥 Journal of Applied Physics 104, 093524 (2008).
  • Guangwen Zhou, Xidong Chen, David Gallagher, and Judith C. Yang, 鈥淧ercolating Oxide Film Growth During Cu(111) Oxidation,鈥 Applied Physics Letters 93, 123104 (2008).
  • A. C. Y. Liu, R. Arenal, and Xidong Chen, 鈥淐lustering in a Highly Hydrogenated Diamondlike Carbon Determined Using Fluctuation Microscopy and Phenomenological Atomistic Simulations,鈥 Physical Review B 76, 121401(R) (2007).
  • Xidong Chen, J. P. Sullivan, T. A. Friedmann, and J. Murray Gibson, 鈥淔luctuation Microscopy Studies of Medium-range Ordering in Amorphous Diamond-like Carbon Films,鈥 Applied Physics Letters 84, 2823 (2004).
  • Xidong Chen and J. Murray Gibson, 鈥淓ffect of Post-oxidation Annealing on Si/SiO 2 Interface Roughness,鈥 Journal of the Electrochemical Society 146, 3032 (1999).

Presentations

  • Hailang Qin, Xidong Chen, Peter Sutter, and Guangwen Zhou, 鈥淚n-situ Imaging of the Dynamic Interaction of the Oxide with the Atomic Steps During the Oxide Growth on NiAl(100)鈥, American Vacuum Society, 61st Annual International Symposium and Exhibition鈥, Baltimore, MD, Nov.9 -14, 2014.
  • Xidong Chen, 鈥淯nderstanding Interface Phenomena in the nano-world, from Brownian motion to Monte Carlo Simulations鈥, Colloquium, Department of Mathematics and Statistics, the Air Force Institute of Technology, December 3, 2009 (invited).
  • Xidong Chen, John Sullivan, Tom Friedmann, and Dean Miller, 鈥淢edium-range Ordering in Amorphous Materials,鈥 Program Review, Argonne National Laboratory, April 26-27, 2006.
  • Xidong Chen, John Sullivan, Tom Friedmann, and Dean Miller, 鈥淪tress Relaxation and Medium-range Order in Diamond-like Amorphous Carbon Films,鈥 Materials Research Society Symposium Proceedings, Boston, MA, 839, P5.5 (2004).
  • Xidong Chen, John Sullivan, and J. Murray Gibson, 鈥淔luctuation Microscopy Studies of Amorphous Diamond-like Carbon Films,鈥 Program Review, Argonne National Laboratory, June 2003.
  • Xidong Chen and Vijay K. Vasudevan, 鈥淒irectional Fluctuation Microscopy Studies of Short-range Ordering in Ni-Mo Alloys,鈥 Symposium BB 4.11, Materials Research Society Fall Meeting, Boston, MA, Dec. 2-6, 2002.
  • Xidong Chen, 鈥淔luctuation Microscopy Studies of Medium-Range Order in Amorphous Materials鈥, Special seminar, Department of Nuclear Engineering and Radiological Sciences, the University of Michigan at Ann Arbor, August 21, 2002 (invited).
  • Xidong Chen, 鈥淭ransmission Electron Microscopy Studies of Medium-Range Order in Amorphous Materials鈥, Department seminar, Materials Science and Engineering Program, the University of Cincinnati, January 11, 2002 (invited).
  • Xidong Chen and J. Murray Gibson, 鈥淭ransmission Electron Microscopy Studies of Aluminum Oxide Structure鈥, Symposium S, Materials Research Society Spring Meeting, San Francisco, CA, April 16-20, 2001 (invited).
  • Xidong Chen and J. Murray Gibson, 鈥淩oughness at Si/SiO 2 Interfaces and Silicon Oxidation鈥, Session EM1-ThA, the 45th International Symposium of the American Vacuum Society, Baltimore, MD, November 2-6, 1998 (invited).

Research Interests

  • Theoretical understanding of surface dynamics.
  • Atomic force microscopy studies of cell structures.
  • Monte Carlo simulation studies of surfaces and interfaces.
  • Fluctuation electron microscopy studies of medium-range ordering in amorphous materials.

Courses

  • PHSC 233 General Physics II Electricity and Magentism
  • PHSC 237 General Physics II Laboratory
  • PHSC 234 General Physics II Waves, Optics and Modern Physics
  • PHSC 318 Classical Mechanics
  • PHSC 331 Thermodynamics
  • PHSC 336 Mathematical Methods in Physics
  • PHSC 340 Electrodynamics
  • PHSC 412 Introduction to Quantum Mechanics
  • PHSC 480 Advanced Physics Laboratory

Areas of Expertise for Media Interviews

  • Atomic Force Microscopy
  • Electron Microscopy
  • Nanotechnology
  • Physics
  • Quantum Mechanics
  • Semiconductor Physics
  • Solid State Devices
  • Surface Sciences
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