World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
39
Citations
5321
World Ranking
4758
National Ranking
1667

Research.com Recognitions

  • 2013 - Fellow of American Physical Society (APS) Citation For sustained contributions to the advancement of optical fiber communications, particularly the use of lithium niobate technology for high speed modulators
  • 1998 - IEEE Fellow For contributions to integrated-optics and optical communication, including the development of high-speed external modulators and their communication applications.

Overview

Steven K. Korotky is affiliated with Nokia in the United States. Their expertise lies in optical fiber communications, particularly focusing on integrated-optics and optical communication technologies.

Korotky's contributions include advancements in the use of lithium niobate technology for high-speed modulators. These modulators play a significant role in enhancing communication systems by enabling faster data transmission rates.

Recognition for their work includes being named an IEEE Fellow in 1998 for contributions to integrated-optics and optical communication, including the development of high-speed external modulators and their communication applications.

Further acknowledgment came in 2013 when Korotky was awarded the Fellow of the American Physical Society (APS) with a citation emphasizing sustained contributions to optical fiber communications and the application of lithium niobate technology in high-speed modulators.

Best Publications

  • Optical time-division multiplexing for very high bit-rate transmission

    R.S. Tucker;G. Eisenstein;S.K. Korotky

  • Power Trends in Communication Networks

    D C Kilper;G Atkinson;S K Korotky;S Goyal

  • Dispersion penalty reduction using an optical modulator with adjustable chirp

    A.H. Gnauck;S.K. Korotky;J.J. Veselka;J. Nagel

  • Dual parallel modulation schemes for low-distortion analog optical transmission

    S.K. Korotky;R.M. de Ridder

  • Analysis and design of resilient multifiber wavelength-routed optical transport networks

    S. Baroni;P. Bayvel;R.J. Gibbens;S.K. Korotky

  • Velocity-matching techniques for integrated optic traveling wave switch/modulators

    R. Alferness;S. Korotky;E. Marcatili

  • Low-loss Ti:LiNbO 3 waveguide bends at λ = 1.3 µm

    W. Minford;S. Korotky;R. Alferness

  • Fully provisioned 112/spl times/112 micro-mechanical optical crossconnect with 35.8 Tb/s demonstrated capacity

    D.T. Neilson;V.A. Aksyuk;S. Arney;N.R. Basavanhally

  • High-speed, burst-mode, packet-capable optical receiver and instantaneous clock recovery for optical bus operation

    Y. Ota;R.G. Swartz;V.D. Archer;S.K. Korotky

  • 1 Gbit/s PSK homodyne transmission system using phase-locked semiconductor lasers

    J.M. Kahn;A.H. Gnauck;J.J. Veselka;S.K. Korotky

  • Optical intensity modulation to 40 GHz using a waveguide electro‐optic switch

    S. K. Korotky;G. Eisenstein;R. S. Tucker;J. J. Veselka

  • Mode size and method for estimating the propagation constant of single-mode Ti:LiNbO 3 strip waveguides

    S. Korotky;W. Minford;L. Buhl;M. Divino

  • Tunable chirp, lightwave modulator for dispersion compensation

    Alan H. Gnauck;Steven K. Korotky;Jane E. Zucker

  • MULTIWAVELENGTH OPTICAL SOURCE

    Veselka John J;Korotky Steven K

  • 8-Gbit/s transmission experiment over 68 km of optical fiber using a Ti:LiNbO 3 external modulator

    S. Korotky;G. Eisenstein;A. Gnauck;B. Kasper

  • Network global expectation model: a statistical formalism for quickly quantifying network needs and costs

    S.K. Korotky

  • A multiwavelength source having precise channel spacing for WDM systems

    J.J. Veselka;S.K. Korotky

  • Efficient single-mode fiber to titanium diffused lithium niobate waveguide coupling for λ = 1.32 µm

    R. Alferness;V. Ramaswamy;S. Korotky;M. Divino

  • Pulse generation for soliton systems using lithium niobate modulators

    J.J. Veselka;S.K. Korotky

  • Active mode-locking characteristics of InGaAsP-single mode fiber composite cavity lasers

    G. Eisenstein;R. Tucker;U. Koren;S. Korotky

  • Dispersion Penalty Reduction using a Optical Modulator with Adjustable Chirp

    A. H. Gnauck;S. K. Korotky;J. J. Veselka;J. Nagel

Frequent Co-Authors

Gadi Eisenstein
Gadi Eisenstein Technion – Israel Institute of Technology
Rodney S. Tucker
Rodney S. Tucker University of Melbourne
Alan H. Gnauck
Alan H. Gnauck Nokia (United States)
G. Raybon
G. Raybon Nokia (United States)
L.W. Stulz
L.W. Stulz Nokia (United States)
Uziel Koren
Uziel Koren Nokia (United States)
Clinton Randy Giles
Clinton Randy Giles Nokia (United States)
Katherine L. Hall
Katherine L. Hall Wellesley College
Joseph M. Kahn
Joseph M. Kahn Stanford University

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