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Materials Science

D-Index
42
Citations
6657
World Ranking
12581
National Ranking
2886

Research.com Recognitions

  • 2000 - Fellow of American Physical Society (APS) Citation For innovative light scattering studies combining high spectral and spatial resolution

Overview

Howard E. Jackson is affiliated with the University of Cincinnati in the United States. Their research primarily spans the fields of Materials Science and Physics and Astronomy, with a focus on several subfields including Materials Chemistry, Atomic and Molecular Physics and Optics, Biomedical Engineering, and Condensed Matter Physics.

The scientist's work centers around key topics such as 2D Materials and Applications, Topological Materials and Phenomena, Advanced Thermoelectric Materials and Devices, Graphene research and applications, Nanowire Synthesis and Applications, Semiconductor Quantum Structures and Devices, and the Electronic and Structural Properties of Oxides.

Recent publications provide insight into the scope of their research contributions. These include:

  • Ultrafast photoinduced band splitting and carrier dynamics in chiral tellurium nanosheets, 2020, Nature Communications
  • A Raman probe of phonons and electron-phonon interactions in the Weyl semimetal NbIrTe4, 2021, Scientific Reports
  • Exploring the band structure of Wurtzite InAs nanowires using photocurrent spectroscopy, 2020, Nano Research
  • Band structure and polarization effects in photothermoelectric spectroscopy of a Bi2Se3 device, 2022, Applied Physics Letters
  • A Raman Probe of Phonons and Electron-phonon Interactions in NbIrTe4, 2020, arXiv (Cornell University)

Frequent co-authors collaborating with Howard E. Jackson include Giriraj Jnawali, Leigh M. Smith, Seyyedesadaf Pournia, Samuel Linser, and Iraj Abbasian Shojaei. This highlights ongoing collaborative efforts within their research network.

Publication venues where Jackson's research frequently appears include:

  • arXiv (Cornell University)
  • Nature Communications
  • Scientific Reports
  • Nano Research
  • Applied Physics Letters

Howard E. Jackson was recognized with the title of Fellow of the American Physical Society (APS) in 2000. The citation for the award notes their work in innovative light scattering studies combining high spectral and spatial resolution.

Best Publications

  • III-V semiconductor nanowires for optoelectronic device applications

    Hannah J Joyce;Qiang Gao;Hoe Hark Tan;Chennupati Jagadish

  • Thermal Conductivity, Second Sound, and Phonon-Phonon Interactions in NaF

    Howard E. Jackson;Charles T. Walker

  • Second Sound in NaF

    Howard E. Jackson;Charles T. Walker;Thomas F. McNelly

  • Polarization and temperature dependence of photoluminescence from zincblende and wurtzite InP nanowires

    A. Mishra;L. V. Titova;T. B. Hoang;H. E. Jackson

  • A novel MEMS pressure sensor fabricated on an optical fiber

    D.C. Abeysinghe;S. Dasgupta;J.T. Boyd;H.E. Jackson

  • Temperature dependence of photoluminescence from single core-shell GaAs–AlGaAs nanowires

    L. V. Titova;Thang B. Hoang;H. E. Jackson;L. M. Smith

  • Carrier Dynamics and Quantum Confinement in type II ZB-WZ InP Nanowire Homostructures

    Kuranananda Pemasiri;Mohammad Montazeri;Richard Gass;Leigh M Smith

  • Unexpected Benefits of Rapid Growth Rate for III-V Nanowires

    Hannah J. Joyce;Qiang Gao;H. Hoe Tan;Chennupati Jagadish

  • Phonon mode study of Si nanocrystals using micro‐Raman spectroscopy

    Hua Xia;Y. L. He;L. C. Wang;W. Zhang

  • High Purity GaAs Nanowires Free of Planar Defects: Growth and Characterization

    Hannah J. Joyce;Qiang Gao;H. Hoe Tan;Chennupati Jagadish

  • Optical, structural, and numerical investigations of GaAs/AlGaAs core-multishell nanowire quantum well tubes.

    Melodie Fickenscher;Teng Shi;Howard E Jackson;Leigh Smith

  • The effect of V/III ratio and catalyst particle size on the crystal structure and optical properties of InP nanowires.

    Suriati Paiman;Qiang Gao;Hoe Hark Tan;Chennupati Jagadish

  • Direct Measure of Strain and Electronic Structure in GaAs/GaP Core-Shell Nanowires

    Mohammad Montazeri;Melodie Fickenscher;Leigh M. Smith;Howard E. Jackson

  • Optically interrogated MEMS pressure sensors for propulsion applications

    Jie Zhou;Samhita Dasgupta;Hiroshi Kobayashi;J. Mitch Wolff

  • An integrated photonic Mach-Zehnder interferometer with no electrodes for sensing electric fields

    D.H. Naghski;J.T. Boyd;H.E. Jackson;S. Sriram

  • Evidence for 2D precursors and interdiffusion in the evolution of self-assembled CdSe quantum dots on ZnSe

    C. S. Kim;M. Kim;J. K. Furdyna;M. Dobrowolska

  • Temperature-dependent micro-photoluminescence of individual CdSe self-assembled quantum dots

    J. C. Kim;H. Rho;L. M. Smith;Howard E. Jackson

  • Nearly intrinsic exciton lifetimes in single twin-free GaAs/AlGaAs core-shell nanowire heterostructures

    S. Perera;M. A. Fickenscher;H. E. Jackson;L. M. Smith

  • Friction and wear of plasma-deposited diamond films

    Kazuhisa Miyoshi;Richard L. C. Wu;Alan Garscadden;Paul N. Barnes

  • Novel MEMS pressure and temperature sensors fabricated on optical fibers

    Don C Abeysinghe;Samhita Dasgupta;Howard E Jackson;Joseph T Boyd

  • Photon scanning tunneling microscope study of optical waveguides

    Din Ping Tsai;Howard E. Jackson;R. C. Reddick;R. C. Reddick;S. H. Sharp;S. H. Sharp

Frequent Co-Authors

Chennupati Jagadish
Chennupati Jagadish Australian National University
Qiang Gao
Qiang Gao Beihang University
Hark Hoe Tan
Hark Hoe Tan Australian National University
Hannah J. Joyce
Hannah J. Joyce University of Cambridge
Jacek K. Furdyna
Jacek K. Furdyna University of Notre Dame
Jin Zou
Jin Zou University of Queensland
Andrew J. Steckl
Andrew J. Steckl University of Cincinnati
Philippe Caroff
Philippe Caroff Microsoft (United States)
Bryan M. Wong
Bryan M. Wong University of California, Riverside
Lincoln J. Lauhon
Lincoln J. Lauhon Northwestern University

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