World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
59
Citations
12282
World Ranking
736
National Ranking
318

Overview

Andrew N. Norris is affiliated with Rutgers, The State University of New Jersey in the United States. Their research primarily falls within the field of Engineering, with a strong focus on subfields such as Biomedical Engineering, Mechanics of Materials, Oceanography, Statistical and Nonlinear Physics, and Atomic and Molecular Physics, and Optics.

Their work covers a range of scientific topics including Acoustic Wave Phenomena Research, Underwater Acoustics Research, Ultrasonics and Acoustic Wave Propagation, Metamaterials and Metasurfaces Applications, Nonlinear Photonic Systems, Numerical methods in engineering, and Seismic Waves and Analysis.

Frequent collaborators in their research include Michael R. Haberman, Matthew Kelsten, Hesam Bakhtiary Yekta, Zhao Lu, and Hussein Nassar.

Andrew N. Norris has contributed to numerous articles in well-known publication venues. These include:

  • The Journal of the Acoustical Society of America
  • arXiv (Cornell University)
  • Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences
  • Wave Motion
  • Extreme Mechanics Letters

Some recent papers authored by or co-authored with Andrew N. Norris are:

  • Nonreciprocity in acoustic and elastic materials, 2020, Nature Reviews Materials
  • Physical Observation of a Robust Acoustic Pumping in Waveguides with Dynamic Boundary, 2020, Physical Review Letters
  • Visualizing coexisting surface states in the weak and crystalline topological insulator Bi2TeI, 2020, Nature Materials
  • Design and characterization of a three-dimensional anisotropic additively manufactured pentamode material, 2022, The Journal of the Acoustical Society of America
  • Metaclusters for the Full Control of Mechanical Waves, 2021, Physical Review Applied

Best Publications

  • A differential scheme for the effective moduli of composites

    Andrew Norris

  • Acoustic cloaking theory

    Andrew N Norris

  • Nonreciprocity in acoustic and elastic materials

    Hussein Nassar;Behrooz Yousefzadeh;Romain Fleury;Massimo Ruzzene

  • Low‐frequency dispersion and attenuation in partially saturated rocks

    Andrew N. Norris

  • Elastic cloaking theory

    A.N. Norris;A.L. Shuvalov

  • Modulated phononic crystals: Non-reciprocal wave propagation and Willis materials

    H. Nassar;X. C. Xu;Andrew Norris;G. L. Huang

  • The Closest Elastic Tensor of Arbitrary Symmetry to an Elasticity Tensor of Lower Symmetry

    Maher Moakher;Andrew N. Norris

  • Acoustic metafluids

    Andrew N. Norris

  • Particle granular temperature in gas fluidized beds

    G.D. Cody;D.J. Goldfarb;G.V. Storch;A.N. Norris

  • Scattering of flexural waves on thin plates

    A.N. Norris;C. Vemula

  • Radiation from a point source and scattering theory in a fluid-saturated porous solid

    Andrew N. Norris

  • Borehole flexural modes in anisotropic formations

    Bikash K. Sinha;Andrew N. Norris;Shu-Kong Chang

  • Non-reciprocal wave propagation in modulated elastic metamaterials.

    H. Nassar;H. Chen;A. N. Norris;M. R. Haberman

  • An Examination of the Mori-Tanaka Effective Medium Approximation for Multiphase Composites

    A. N. Norris

  • A generalized differential effective medium theory

    A.N. Norris;A.J. Callegari;P. Sheng

  • Dynamic Green's functions in anisotropic piezoelectric, thermoelastic and poroelastic solids

    Andrew N. Norris

  • Effective-medium theories for two-phase dielectric media

    Andrew N. Norris;Ping Sheng;Andrew J. Callegari

  • Nonreciprocal Wave Propagation in a Continuum-Based Metamaterial with Space-Time Modulated Resonators

    Yangyang Chen;Xiaopeng Li;Hussein Nassar;Andrew N. Norris

  • On the correspondence between poroelasticity and thermoelasticity

    Andrew Norris

  • Acoustic radiation from a circular pipe with an infinite flange

    Andrew Norris;I. C. Sheng

  • FLEXURAL WAVE PROPAGATION AND SCATTERING ON THIN PLATES USING MINDLIN THEORY

    C. Vemula;Andrew Norris

  • Analytical formulation of three-dimensional dynamic homogenization for periodic elastic systems

    A. N. Norris;A. L. Shuvalov;A. A. Kutsenko

Frequent Co-Authors

Jan Drewes Achenbach
Jan Drewes Achenbach Northwestern University
George D. Cody
George D. Cody Carnegie Institution for Science
Bikash K. Sinha
Bikash K. Sinha Schlumberger (United States)
Guoliang Huang
Guoliang Huang University of Missouri
Ping Sheng
Ping Sheng Hong Kong University of Science and Technology
David Linton Johnson
David Linton Johnson Schlumberger (United States)
Paul A. Martin
Paul A. Martin Colorado School of Mines
Maarten V. de Hoop
Maarten V. de Hoop Rice University
Carolyn Conner Seepersad
Carolyn Conner Seepersad The University of Texas at Austin
Chiara Daraio
Chiara Daraio California Institute of Technology

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