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Alexander Y. Grosberg

Alexander Y. Grosberg

D-Index & Metrics

Chemistry

D-Index
61
Citations
16683
World Ranking
9130
National Ranking
2575

Research.com Recognitions

  • 2004 - Fellow of American Physical Society (APS) Citation For fundamental contributions in the statistical physics of macromolecules, including pioneering results in phase transitions, quenched disorder, and topology of polymers and biopolymers

Overview

Alexander Y. Grosberg is affiliated with New York University in the United States. Their research spans multiple fields, primarily focusing on biochemistry, genetics, and molecular biology, as well as physics and astronomy. The scientist's work includes extensive contributions to the understanding of molecular biology, statistical and nonlinear physics, condensed matter physics, materials chemistry, and biomedical engineering.

The main topics covered in their research include advanced thermodynamics and statistical mechanics, protein structure and dynamics, micro and nano robotics, material dynamics and properties, genomics and chromatin dynamics, diffusion and search dynamics, and DNA and nucleic acid chemistry.

Alexander Y. Grosberg has authored several papers in notable scientific journals. Selected recent publications are:

  • Nonlinear Shear Rheology of Entangled Polymer Rings, 2021, Macromolecules
  • Activity-Driven Phase Transition Causes Coherent Flows of Chromatin, 2023, Physical Review Letters
  • Symmetry-based Classification of Forces Driving Chromatin Dynamics, 2022, Soft Matter
  • Three-body Problem for Langevin Dynamics with Different Temperatures, 2020, Physical Review E
  • Tethered Tracer in a Mixture of Hot and Cold Brownian Particles: Can Activity Pacify Fluctuations?, 2021, Soft Matter

The scientist frequently publishes in venues such as the Journal Club for Condensed Matter Physics, arXiv (Cornell University), Soft Matter, Physical Review E, and Physical Review Letters.

Collaboration is a significant aspect of their work. Frequent co-authors include Iraj Eshghi, Alexandra Zidovska, Sergei Nechaev, Yitzhak Rabin, and Michael Rubinstein.

In 2004, Alexander Y. Grosberg was recognized as a Fellow of the American Physical Society (APS) for contributions in the statistical physics of macromolecules, including work on phase transitions, quenched disorder, and the topology of polymers and biopolymers.

Best Publications

  • Statistical physics of macromolecules

    Alexander Yu. Grosberg;Alexei R. Khokhlov;H. Eugene Stanley;A. John Mallinckrodt

  • Colloquium: The physics of charge inversion in chemical and biological systems

    A. Yu. Grosberg;T. T. Nguyen;B. I. Shklovskii

  • Electrostatic focusing of unlabelled DNA into nanoscale pores using a salt gradient

    Meni Wanunu;Will Morrison;Yitzhak Rabin;Alexander Y. Grosberg

  • On the transition coordinate for protein folding

    Rose Du;Vijay S. Pande;Vijay S. Pande;Alexander Yu. Grosberg;Toyoichi Tanaka

  • Modeling the conductance and DNA blockade of solid-state nanopores.

    Stefan W Kowalczyk;Alexander Y Grosberg;Yitzhak Rabin;Yitzhak Rabin;Yitzhak Rabin;Cees Dekker

  • The role of topological constraints in the kinetics of collapse of macromolecules

    A. Yu. Grosberg;S.K. Nechaev;E.I. Shakhnovich

  • Fast Translocation of Proteins through Solid State Nanopores

    Calin Plesa;Stefan W. Kowalczyk;Ruben Zinsmeester;Alexander Y. Grosberg

  • Molecular Dynamics Simulation Study of Nonconcatenated Ring Polymers in a Melt: I. Statics.

    Jonathan D. Halverson;Won Bo Lee;Gary S. Grest;Alexander Y. Grosberg

  • Pathways for protein folding: Is a new view needed?

    Vijay S Pande;Alexander Yu Grosberg;Toyoichi Tanaka;Daniel S Rokhsar

  • Molecular Dynamics Simulation Study of Nonconcatenated Ring Polymers in a Melt: II. Dynamics

    Jonathan D. Halverson;Won Bo Lee;Gary S. Grest;Alexander Y. Grosberg

  • Direct observation of DNA knots using a solid-state nanopore

    Calin Plesa;Daniel Verschueren;Sergii Pud;Jaco van der Torre

  • Two-Stage Kinetics of Single-Chain Collapse. Polystyrene in Cyclohexane

    Benjamin Chu;Qicong Ying;Alexander Yu. Grosberg

  • Reversible Molecular Adsorption Based on Multiple-Point Interaction by Shrinkable Gels

    Taro Oya;Takashi Enoki;Alexander Yu. Grosberg;Satoru Masamune

  • Rheology of Ring Polymer Melts: From Linear Contaminants to Ring-Linear Blends

    Jonathan D. Halverson;Gary S. Grest;Alexander Y. Grosberg;Kurt Kremer

  • Equilibrium swelling properties of polyampholytic hydrogels

    Anthony E. English;Salvador Mafé;Salvador Mafé;José A. Manzanares;José A. Manzanares;Xiahong Yu

  • Giant Molecules: Here, There, and Everywhere

    Alexander Yu. Grosberg;Alexei R. Khokhlov;Thomas Halsey

  • Critical exponents for random knots

    Alexander Yu. Grosberg

  • Closed loops of nearly standard size: common basic element of protein structure.

    Igor N Berezovsky;Alexander Y Grosberg;Edward N Trifonov

  • Statistical theory of polymeric lyotropic liquid crystals

    Alexandr Yu. Grosberg;Alexei R. Khokhlov

  • Nonequilibrium statistical mechanics of mixtures of particles in contact with different thermostats.

    A. Y. Grosberg;A. Y. Grosberg;J.-F. Joanny;J.-F. Joanny

  • Polymer Gels That Memorize Elements of Molecular Conformation

    Carmen Alvarez-Lorenzo;Orhan Guney;Taro Oya;Yasuzo Sakai

  • DNA capture into a nanopore: Interplay of diffusion and electrohydrodynamics

    Alexander Y. Grosberg;Yitzhak Rabin;Yitzhak Rabin;Yitzhak Rabin

Frequent Co-Authors

Alexei R. Khokhlov
Alexei R. Khokhlov Lomonosov Moscow State University
Vijay S. Pande
Vijay S. Pande Stanford University
Kurt Kremer
Kurt Kremer Max Planck Institute for Polymer Research
Gary S. Grest
Gary S. Grest Sandia National Laboratories
Yukikazu Takeoka
Yukikazu Takeoka Nagoya University
Carmen Alvarez-Lorenzo
Carmen Alvarez-Lorenzo University of Santiago de Compostela
Cees Dekker
Cees Dekker Delft University of Technology
Eugene I. Shakhnovich
Eugene I. Shakhnovich Harvard University
Michael Rubinstein
Michael Rubinstein Duke University

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