World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
60
Citations
13196
World Ranking
695
National Ranking
305

Overview

Steven W. Shaw is affiliated with the Florida Institute of Technology in the United States. Their research spans primarily across the fields of Physics and Astronomy as well as Engineering, with a significant focus on subfields such as Atomic and Molecular Physics, and Optics, Electrical and Electronic Engineering, Civil and Structural Engineering, Control and Systems Engineering, and Biomedical Engineering.

The scientist's work concentrates on several core topics including Mechanical and Optical Resonators, Advanced MEMS and NEMS Technologies, Force Microscopy Techniques and Applications, Photonic and Optical Devices, Magnetic Bearings and Levitation Dynamics, Vibration Control and Rheological Fluids, and Advanced Fiber Laser Technologies.

Recent publications authored or co-authored by Steven W. Shaw include:

  • Resonant modal interactions in micro/nano-mechanical structures (2021, Nonlinear Dynamics)
  • The effects of nonlinear damping on degenerate parametric amplification (2020, Nonlinear Dynamics)
  • Nonlinear Stiffness and Nonlinear Damping in Atomically Thin MoS2 Nanomechanical Resonators (2022, Nano Letters)
  • Effective and robust rocking centrifugal pendulum vibration absorbers (2022, Journal of Sound and Vibration)
  • Spectral narrowing of parametrically pumped thermomechanical noise (2020, Applied Physics Letters)

Frequent co-authors who have collaborated with Steven W. Shaw include:

  • Oriel Shoshani
  • Philip X.-L. Feng
  • Jaesung Lee
  • James M. L. Miller
  • Thomas W. Kenny

The research contributions appear regularly in journals and conferences such as:

  • Nonlinear Dynamics
  • 2022 IEEE 35th International Conference on Micro Electro Mechanical Systems Conference (MEMS)
  • Journal of Microelectromechanical Systems
  • Communications Physics
  • Nano Letters

Best Publications

  • A periodically forced piecewise linear oscillator

    Steven Shaw;Philip Holmes

  • Normal Modes for Non-Linear Vibratory Systems

    Steven W. Shaw;Christophe Pierre

  • Non-linear normal modes and invariant manifolds

    Steven Shaw;Christophe Pierre

  • On the dynamic response of a system with dry friction

    S.W. Shaw

  • Nonlinear Dynamics and Its Applications in Micro- and Nanoresonators

    Jeffrey F. Rhoads;Steven W. Shaw;Kimberly L. Turner

  • Normal modes of vibration for non-linear continuous systems

    Steven W. Shaw;Christophe Pierre

  • Chaotic vibrations of a beam with non-linear boundary conditions

    Francis C Moon;Steven W. Shaw

  • The Dynamics of a Harmonically Excited System Having Rigid Amplitude Constraints, Part 2: Chaotic Motions and Global Bifurcations

    S. W. Shaw

  • Generalized parametric resonance in electrostatically actuated microelectromechanical oscillators

    Jeffrey F. Rhoads;Steven W. Shaw;Kimberly L. Turner;Jeff Moehlis

  • A NEW GALERKIN-BASED APPROACH FOR ACCURATE NON-LINEAR NORMAL MODES THROUGH INVARIANT MANIFOLDS

    E. Pesheck;C. Pierre;S.W. Shaw

  • A Periodically Forced Impact Oscillator With Large Dissipation

    S. W. Shaw;P. J. Holmes

  • Forced vibrations of a beam with one-sided amplitude constraint: Theory and experiment

    S.W. Shaw

  • The nonlinear response of resonant microbeam systems with purely-parametric electrostatic actuation

    Jeffrey F Rhoads;Steven W Shaw;Kimberly L Turner

  • APPLICATION OF GLOBAL METHODS FOR ANALYZING DYNAMICAL SYSTEMS TO SHIP ROLLING MOTION AND CAPSIZING

    Jeffrey M. Falzarano;Steven W. Shaw;Armin W. Troesch

  • The transition to chaos in a simple mechanical system

    Steven W. Shaw;Richard H. Rand

  • Tunable Microelectromechanical Filters that Exploit Parametric Resonance

    Jeffrey F. Rhoads;Steven W. Shaw;Kimberly L. Turner;Rajashree Baskaran

  • Large-amplitude non-linear normal modes of piecewise linear systems

    Dongying Jiang;Christophe Pierre;Steven Shaw

  • PERFORMANCE AND DYNAMIC STABILITY OF GENERAL-PATH CENTRIFUGAL PENDULUM VIBRATION ABSORBERS

    A.S. Alsuwaiyan;S.W. Shaw

  • Direct observation of coherent energy transfer in nonlinear micromechanical oscillators.

    Changyao Chen;Damián H. Zanette;David A. Czaplewski;Steven Shaw

  • Circulant Matrices and Their Application to Vibration Analysis

    Brian J. Olson;Steven W. Shaw;Chengzhi Shi;Christophe Pierre

  • On the response of the non-linear vibration absorber

    Jinsiang Shaw;Steven W. Shaw;Alan G. Haddow

Frequent Co-Authors

H. Schellman
H. Schellman Oregon State University
S. Blessing
S. Blessing Florida State University
P. D. Grannis
P. D. Grannis Stony Brook University

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