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Eric A. Dauler

Eric A. Dauler

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
33
Citations
4954
World Ranking
6026
National Ranking
2012

Overview

Eric A. Dauler is affiliated with the Massachusetts Institute of Technology (MIT) in the United States. This association positions them within one of the world's leading academic and research institutions, which offers a highly collaborative and innovative environment for scientific inquiry.

Currently, there are no available records of published research papers authored by Eric A. Dauler. Likewise, no frequent co-authors or common publication venues have been documented for this researcher. This lack of publicly listed publications or collaborative patterns may indicate emerging activity in the field or a focus on other forms of academic contribution.

No specific fields or subfields of study have been reported for Eric A. Dauler, nor have any main topics of research or thematic concentrations been identified. Similarly, there are no recorded book publications associated with their name.

There is no record of awards or formal recognitions attributed to Eric A. Dauler at this time.

Overall, the publicly available information highlights Eric A. Dauler's institutional affiliation but does not provide detailed insight into their research output, thematic focus, or academic collaborations. Continued updates from relevant databases may offer further clarity on their scientific activities and contributions.

Best Publications

  • Kinetic-inductance-limited reset time of superconducting nanowire photon counters

    Andrew J. Kerman;Eric A. Dauler;William E. Keicher;Joel K. W. Yang

  • Nanowire single-photon detector with an integrated optical cavity and anti-reflection coating

    Kristine M. Rosfjord;Joel K. W. Yang;Eric A. Dauler;Andrew J. Kerman

  • Modeling the Electrical and Thermal Response of Superconducting Nanowire Single-Photon Detectors

    J.K.W. Yang;A.J. Kerman;E.A. Dauler;V. Anant

  • Single-Photon Detectors Based on Ultranarrow Superconducting Nanowires

    Francesco Marsili;Faraz Najafi;Eric Dauler;Francesco Bellei

  • Constriction-limited detection efficiency of superconducting nanowire single-photon detectors

    Andrew J. Kerman;Eric A. Dauler;Joel K. W. Yang;Kristine M. Rosfjord

  • 781 Mbit/s photon-counting optical communications using a superconducting nanowire detector

    Bryan S. Robinson;Andrew J. Kerman;Eric A. Dauler;Richard J. Barron

  • Electrothermal feedback in superconducting nanowire single-photon detectors

    Andrew J. Kerman;Joel K. W. Yang;Richard J. Molnar;Eric A. Dauler

  • Efficient single photon detection from 500 nm to 5 μm wavelength

    Francesco Marsili;Francesco Bellei;Faraz Najafi;Andrew E. Dane

  • High-speed and high-efficiency superconducting nanowire single photon detector array.

    D. Rosenberg;A. J. Kerman;R. J. Molnar;E. A. Dauler

  • High-performance shortwave-infrared light-emitting devices using core-shell (PbS-CdS) colloidal quantum dots.

    Geoffrey J. Supran;Katherine W. Song;Gyu Weon Hwang;Raoul E. Correa

  • Single-photon detectors based on ultra-narrow superconducting nanowires

    F. Marsili;F. Najafi;E. Dauler;F. Bellei

  • Optical properties of superconducting nanowire single-photon detectors.

    Vikas Anant;Andrew J. Kerman;Eric A. Dauler;Joel K. W. Yang

  • Photon-number-resolution with sub-30-ps timing using multi-element superconducting nanowire single photon detectors

    Eric A. Dauler;Andrew J. Kerman;Bryan S. Robinson;Joel K.W. Yang

  • Review of superconducting nanowire single-photon detector system design options and demonstrated performance

    Eric A. Dauler;Matthew E. Grein;Andrew J. Kerman;Francesco Marsili

  • Multi-Element Superconducting Nanowire Single-Photon Detector

    E.A. Dauler;B.S. Robinson;A.J. Kerman;J.K.W. Yang

  • Design Considerations for 1.06- $mu$ m InGaAsP–InP Geiger-Mode Avalanche Photodiodes

    J.P. Donnelly;E.K. Duerr;K.A. McIntosh;E.A. Dauler

  • Photon-number-resolving detector with 10 bits of resolution

    Leaf A. Jiang;Eric A. Dauler;Joshua T. Chang

  • Readout of superconducting nanowire single-photon detectors at high count rates

    Andrew J. Kerman;Danna Rosenberg;Richard J. Molnar;Eric A. Dauler

  • Analysis and mitigation of interface losses in trenched superconducting coplanar waveguide resonators

    G. Calusine;A. Melville;W. Woods;R. Das

  • Efficiently Coupling Light to Superconducting Nanowire Single-Photon Detectors

    Xiaolong Hu;C.W. Holzwarth;D. Masciarelli;E.A. Dauler

  • Afterpulsing in Geiger-mode avalanche photodiodes for 1.06μm wavelength

    K. E. Jensen;P. I. Hopman;E. K. Duerr;E. A. Dauler

  • Superconducting nanowire single-photon detectors integrated with optical nano-antennae.

    Xiaolong Hu;Eric A. Dauler;Richard J. Molnar;Karl K. Berggren

  • Analysis and mitigation of interface losses in trenched superconducting coplanar waveguide resonators

    Greg Calusine;Alexander Melville;Wayne Woods;Rabindra Das

  • High-order temporal coherences of chaotic and laser light

    Martin J. Stevens;Burm Baek;Eric A. Dauler;Andrew J. Kerman

  • Fiber-coupled nanowire photon counter at 1550 nm with 24% system detection efficiency

    Xiaolong Hu;Tian Zhong;James E. White;Eric A. Dauler

Frequent Co-Authors

Joel K. W. Yang
Joel K. W. Yang Singapore University of Technology and Design
Francesco Marsili
Francesco Marsili Facebook (United States)
Richard P. Mirin
Richard P. Mirin National Institute of Standards and Technology
Isabelle Sagnes
Isabelle Sagnes Centre for Nanosciences and Nanotechnologies
Roman Sobolewski
Roman Sobolewski University of Rochester

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