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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
60
Citations
12765
World Ranking
1650
National Ranking
668

Overview

Theodore B. Norris is affiliated with the University of Michigan-Ann Arbor in the United States. Their research spans the fields of engineering and materials science, with key subfields including materials chemistry, computer vision and pattern recognition, electrical and electronic engineering, electronic, optical, and magnetic materials, and oceanography.

Their published work focuses on several main topics, notably Ga2O3 and related materials, random lasers and scattering media, two-dimensional (2D) materials and applications, advanced photocatalysis techniques, underwater acoustics research, image processing techniques and applications, and advanced vision and imaging.

Theodore B. Norris has contributed to multiple recent papers, including:

  • "Ranging and light field imaging with transparent photodetectors," 2020, Nature Photonics
  • "Neural network based 3D tracking with a graphene transparent focal stack imaging system," 2021, Nature Communications
  • "Perspectives and recent advances of two-dimensional III-nitrides: Material synthesis and emerging device applications," 2023, Applied Physics Letters
  • "Strongly enhanced THz generation enabled by a graphene hot-carrier fast lane," 2022, Nature Communications
  • "Ultrafast dynamics of charge transfer in CVD grown MoS2-graphene heterostructure," 2021, Applied Physics Letters

Their frequent collaborators include:

  • Zetian Mi
  • Ishtiaque Ahmed Navid
  • Nooshin M. Estakhri
  • Yifan Shen
  • Zhaohui Zhong

Theodore B. Norris's research has been published in a variety of venues, with repeated contributions to:

  • arXiv (Cornell University)
  • Applied Physics Letters
  • Conference on Lasers and Electro-Optics
  • Nature Communications
  • Proceedings of the National Academy of Sciences

Best Publications

  • Graphene photodetectors with ultra-broadband and high responsivity at room temperature

    Chang Hua Liu;You Chia Chang;Theodore B. Norris;Zhaohui Zhong

  • Time-resolved observation of electron-phonon relaxation in copper.

    H. E. Elsayed-Ali;T. B. Norris;M. A. Pessot;G. A. Mourou

  • Ultrafast Relaxation of Excited Dirac Fermions in Epitaxial Graphene Using Optical Differential Transmission Spectroscopy

    Dong Sun;Zong-Kwei Wu;Charles Divin;Xuebin Li

  • Observation of Phonon Bottleneck in Quantum Dot Electronic Relaxation

    J. Urayama;T. B. Norris;J. Singh;P. Bhattacharya

  • Generation of narrow-band terahertz radiation via optical rectification of femtosecond pulses in periodically poled lithium niobate

    Y.-S. Lee;T. Meade;V. Perlin;H. Winful

  • Rapid carrier relaxation in In 0.4 Ga 0.6 A s / G a A s quantum dots characterized by differential transmission spectroscopy

    T. S. Sosnowski;T. B. Norris;H. Jiang;J. Singh

  • Room-temperature operation of In0.4Ga0.6As/GaAs self-organised quantum dot lasers

    K. Kamath;P. Bhattacharya;T. Sosnowski;T. Norris

  • Time-resolved vacuum Rabi oscillations in a semiconductor quantum microcavity

    Tb Norris;June-Koo Kevin Rhee;Cy Sung;Y Arakawa

  • Realization of mid-infrared graphene hyperbolic metamaterials

    You Chia Chang;Che Hung Liu;Chang Hua Liu;Siyuan Zhang

  • Smart microscope: an adaptive optics learning system for aberration correction in multiphoton confocal microscopy.

    O. Albert;L. Sherman;G. Mourou;T. B. Norris

  • Femtosecond pulse amplification at 250 kHz with a Ti:sapphire regenerative amplifier and application to continuum generation

    Norris Tb

  • Carrier dynamics and high-speed modulation properties of tunnel injection InGaAs-GaAs quantum-dot lasers

    P. Bhattacharya;S. Ghosh;S. Pradhan;J. Singh

  • Terahertz circular dichroism spectroscopy of biomaterials enabled by kirigami polarization modulators

    Won Jin Choi;Gong Cheng;Zhengyu Huang;Shuai Zhang

  • Real-time biomolecular binding detection using a sensitive photonic crystal biosensor.

    Yunbo Guo;Jing Yong Ye;Charles Divin;Baohua Huang

  • Enhanced two-photon biosensing with double-clad photonic crystal fibers

    M. T. Myaing;J. Y. Ye;T. B. Norris;T. Thomas

  • Temperature dependence of narrow-band terahertz generation from periodically poled lithium niobate

    Y.-S. Lee;T. Meade;Mark R. DeCamp;Theodore B. Norris

  • In(Ga)As/GaAs self-organized quantum dot lasers: DC and small-signal modulation properties

    P. Bhattacharya;K.K. Kamath;J. Singh;D. Klotzkin

  • Extracting the complex optical conductivity of mono- and bilayer graphene by ellipsometry

    You Chia Chang;Chang Hua Liu;Che Hung Liu;Zhaohui Zhong

  • Single particle plasmon spectroscopy of silver nanowires and gold nanorods.

    Moussa N'gom;Jan Ringnalda;Jan Ringnalda;John F. Mansfield;Ashish Agarwal

  • Power scalable compact THz system based on an ultrafast Yb-doped fiber amplifier

    Guoqing Chang;Charles J. Divin;Chi Hung Liu;Steven L. Williamson

Frequent Co-Authors

Almantas Galvanauskas
Almantas Galvanauskas University of Michigan–Ann Arbor
Claire Berger
Claire Berger Georgia Institute of Technology
Walt A. de Heer
Walt A. de Heer Georgia Institute of Technology
Federico Capasso
Federico Capasso Harvard University
Nicholas A. Kotov
Nicholas A. Kotov University of Michigan–Ann Arbor
Jasprit Singh
Jasprit Singh University of Michigan–Ann Arbor
Yasuhiko Arakawa
Yasuhiko Arakawa University of Tokyo
Jamie D. Phillips
Jamie D. Phillips University of Delaware
Raoul Kopelman
Raoul Kopelman University of Michigan–Ann Arbor
Pallab Bhattacharya
Pallab Bhattacharya University of Michigan–Ann Arbor

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