World's Best Scientists 2026 revealed!

Overview

Sunil A. Bhave is affiliated with Purdue University West Lafayette in the United States. Their research spans across engineering and physics, with a primary focus on electrical and electronic engineering as well as atomic and molecular physics and optics. Their work also touches on materials chemistry, biomedical engineering, and instrumentation.

Their main research topics include advanced fiber laser technologies, photonic and optical devices, mechanical and optical resonators, diamond and carbon-based materials research, advanced fiber optic sensors, semiconductor lasers and optical devices, and acoustic wave resonator technologies.

Sunil A. Bhave has contributed to several recent papers, among them:

  • Monolithic piezoelectric control of soliton microcombs (2020) published in Nature
  • Low-noise frequency-agile photonic integrated lasers for coherent ranging (2022) published in Nature Communications
  • High-Contrast Plasmonic-Enhanced Shallow Spin Defects in Hexagonal Boron Nitride for Quantum Sensing (2021) published in Nano Letters
  • Observation of Stimulated Brillouin Scattering in Silicon Nitride Integrated Waveguides (2020) published in Physical Review Letters
  • Hybrid integrated photonics using bulk acoustic resonators (2020) published in Nature Communications

The scientist frequently collaborates with colleagues such as Tobias J. Kippenberg, Anat Siddharth, Rui Ning Wang, Junqiu Liu, and Hao Tian. These coauthors are repeated contributors in their joint work, with the highest count of collaborations being 36 with Tobias J. Kippenberg.

Sunil A. Bhave regularly publishes in a range of venues, with the most common being arXiv (Cornell University), Conference on Lasers and Electro-Optics, Zenodo (CERN European Organization for Nuclear Research), Nature Communications, and Optica. Their work spans over 40 publications across these venues, showing a consistent presence in both preprint repositories and established scientific journals.

Best Publications

  • Development of Quantum InterConnects for Next-Generation Information Technologies

    David Awschalom;Karl K. Berggren;Hannes Bernien;Sunil Bhave

  • Fully-differential poly-SiC Lame mode resonator and checkerboard filter

    S.A. Bhave;Di Gao;R. Maboudian;R.T. Howe

  • Monolithic piezoelectric control of soliton microcombs

    Junqiu Liu;Hao Tian;Erwan Lucas;Arslan S. Raja

  • The Resonant Body Transistor

    Dana Weinstein;Sunil A. Bhave

  • Magnetic-free silicon nitride integrated optical isolator

    Hao Tian;Junqiu Liu;Anat Siddharth;Rui Ning Wang

  • High-Contrast Plasmonic-Enhanced Shallow Spin Defects in Hexagonal Boron Nitride for Quantum Sensing.

    Xingyu Gao;Boyang Jiang;Andres E Llacsahuanga Allcca;Kunhong Shen

  • Design and Fabrication of S 0 Lamb-Wave Thin-Film Lithium Niobate Micromechanical Resonators

    Renyuan Wang;Sunil A. Bhave;Kushal Bhattacharjee

  • Development of Quantum Interconnects (QuICs) for Next-Generation Information Technologies

    David Awschalom;Karl K. Berggren;Hannes Bernien;Sunil Bhave

  • Internal Dielectric Transduction in Bulk-Mode Resonators

    D. Weinstein;S.A. Bhave

  • Internal Dielectric Transduction of a 4.5 GHz Silicon Bar Resonator

    D. Weinstein;S.A. Bhave

  • Performance comparison of Pb(Zr0.52Ti0.48)O3-only and Pb(Zr0.52Ti0.48)O3-on-silicon resonators

    Hengky Chandrahalim;Sunil A. Bhave;Ronald Polcawich;Jeff Pulskamp

  • Monolithic piezoelectric control of soliton microcombs

    J. Liu;E. Lucas;A. Raja;G. Lihachev

  • Dielectrically Transduced Single-Ended to Differential MEMS Filter

    D. Weinstein;H. Chandrahalim;Lih Feng Cheow;S.A. Bhave

  • A monolithic radiation-pressure driven, low phase noise silicon nitride opto-mechanical oscillator

    Siddharth Tallur;Suresh Sridaran;Sunil A. Bhave

  • Electrostatic actuation of silicon optomechanical resonators

    Suresh Sridaran;Sunil A. Bhave

  • A modular process for integrating thick polysilicon MEMS devices with sub-micron CMOS

    John A. Yasaitis;Michael Judy;Tim Brosnihan;Peter M. Garone

  • Electrode-shaping for the excitation and detection of permitted arbitrary modes in arbitrary geometries in piezoelectric resonators

    J. S. Pulskamp;S. S. Bedair;R. G. Polcawich;G. L. Smith

  • Optomechanical sensors based on coupling between two optical cavities

    Sunil A. Bhave;David Neil Hutchison

  • An FBAR Circulator

    Mustafa Mert Torunbalci;Trevor J. Odelberg;Suresh Sridaran;Richard C. Ruby

  • Hybrid integrated photonics using bulk acoustic resonators.

    Hao Tian;Junqiu Liu;Bin Dong;J. Connor Skehan

Frequent Co-Authors

Roger T. Howe
Roger T. Howe Stanford University
Madan Dubey
Madan Dubey United States Army Research Laboratory
Sasikanth Manipatruni
Sasikanth Manipatruni Intel (United States)
Dmitri E. Nikonov
Dmitri E. Nikonov Intel (United States)
Tsu-Jae King
Tsu-Jae King University of California, Berkeley
David D. Awschalom
David D. Awschalom Argonne National Laboratory
Darrell G. Schlom
Darrell G. Schlom Cornell University
Ramamoorthy Ramesh
Ramamoorthy Ramesh Rice University
Edo Waks
Edo Waks University of Maryland, College Park

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