World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
34
Citations
4029
World Ranking
5889
National Ranking
27

Best Publications

  • Silicon Photonics for High-Capacity Data Communications

    Unknown

  • Perspective: The future of quantum dot photonic integrated circuits

    Justin C. Norman;Daehwan Jung;Yating Wan;John E. Bowers

  • A Review of High-Performance Quantum Dot Lasers on Silicon

    Justin C. Norman;Daehwan Jung;Zeyu Zhang;Yating Wan

  • 1.3 μm submilliamp threshold quantum dot micro-lasers on Si

    Yating Wan;Justin Norman;Qiang Li;M. J. Kennedy

  • High efficiency low threshold current 1.3 μm InAs quantum dot lasers on on-axis (001) GaP/Si

    Daehwan Jung;Justin Norman;M. J. Kennedy;Chen Shang

  • Highly Reliable Low-Threshold InAs Quantum Dot Lasers on On-Axis (001) Si with 87% Injection Efficiency

    Daehwan Jung;Zeyu Zhang;Justin Norman;Robert Herrick

  • High-performance silicon photonics using heterogeneous integration

    Chao Xiang;Warren Jin;Duanni Huang;Minh Anh Tran

  • Perspectives on Advances in Quantum Dot Lasers and Integration with Si Photonic Integrated Circuits

    Chen Shang;Yating Wan;Jennifer Selvidge;Eamonn Hughes

  • Electrically pumped continuous wave quantum dot lasers epitaxially grown on patterned, on-axis (001) Si.

    Justin C. Norman;Matthew J. Kennedy;Jennifer G. Selvidge;Qiang Li

  • Optically pumped 1.3 μm room-temperature InAs quantum-dot micro-disk lasers directly grown on (001) silicon.

    Yating Wan;Qiang Li;Alan Y. Liu;Arthur C. Gossard

  • High-temperature reliable quantum-dot lasers on Si with misfit and threading dislocation filters

    Chen Shang;Eamonn Hughes;Yating Wan;Mario Dumont

  • How far will silicon nanocrystals push the scaling limits of NVMs technologies

    B. De Salvo;C. Gerardi;S. Lombardo;T. Baron

  • High Speed Evanescent Quantum-Dot Lasers on Si

    Yating Wan;Chao Xiang;Joel Guo;Rosalyn Koscica

  • Monolithically integrated InAs/InGaAs quantum dot photodetectors on silicon substrates

    Yating Wan;Zeyu Zhang;Ruilin Chao;Justin Norman

  • Sub-wavelength InAs quantum dot micro-disk lasers epitaxially grown on exact Si (001) substrates

    Yating Wan;Qiang Li;Alan Y. Liu;Weng W. Chow

  • Tunable quantum dot lasers grown directly on silicon

    Yating Wan;Sen Zhang;Justin C. Norman;M. J. Kennedy

  • 1.3 µm Quantum Dot-Distributed Feedback Lasers Directly Grown on (001) Si

    Yating Wan;Justin C. Norman;Yeyu Tong;Yeyu Tong;M. J. Kennedy

  • Directly modulated 1.3 μm quantum dot lasers epitaxially grown on silicon.

    Daisuke Inoue;Daehwan Jung;Justin Norman;Yating Wan

  • 1.55 μm room-temperature lasing from subwavelength quantum-dot microdisks directly grown on (001) Si

    Bei Shi;Si Zhu;Qiang Li;Chak Wah Tang

  • Directly modulated quantum dot lasers on silicon with a milliampere threshold and high temperature stability

    Yating Wan;Daisuke Inoue;Daehwan Jung;Justin C. Norman

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