Jérôme Faist

Active 1992–2026

Also published as
Jerome Faist
57
Papers
18,703
Citations
45
h-index
53
i10-index

Citations

Citations per year for Jérôme Faist1991: 1 citations1994: 3 citations1995: 2 citations1996: 3 citations1997: 4 citations1998: 17 citations1999: 8 citations2000: 11 citations2001: 28 citations2002: 48 citations2003: 20 citations2004: 19 citations2005: 30 citations2006: 24 citations2007: 35 citations2008: 44 citations2009: 34 citations2010: 64 citations2011: 42 citations2012: 59 citations2013: 61 citations2014: 82 citations2015: 70 citations2016: 64 citations2017: 78 citations2018: 70 citations2019: 67 citations2020: 91 citations2021: 57 citations2022: 71 citations2023: 44 citations2024: 65 citations2025: 40 citations1992–1993: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 337 citing papers, 21.2% of this breakdownChina: 173 citing papers, 10.9% of this breakdownGermany: 167 citing papers, 10.5% of this breakdownUnited Kingdom: 115 citing papers, 7.2% of this breakdownJapan: 93 citing papers, 5.8% of this breakdownFrance: 91 citing papers, 5.7% of this breakdownItaly: 87 citing papers, 5.5% of this breakdownSwitzerland: 69 citing papers, 4.3% of this breakdownSpain: 47 citing papers, 3% of this breakdownCanada: 34 citing papers, 2.1% of this breakdownAustralia: 30 citing papers, 1.9% of this breakdownAustria: 26 citing papers, 1.6% of this breakdown
0%21.2%Other 20.3%

Fields

  • Physics and Astronomy35.6%
  • Engineering23.5%
  • Chemistry14.9%
  • Computer Science13.9%
  • Materials Science6.3%
  • Biochemistry, Genetics and Molecular Biology3.7%
  • Other2.1%

Topics

  • Quantum Information and Cryptography9.1%
  • Spectroscopy and Laser Applications7.1%
  • Photonic and Optical Devices7%
  • Quantum and electron transport phenomena4.1%
  • Semiconductor Quantum Structures and Devices3.8%
  • Strong Light-Matter Interactions3.8%
  • Other65.1%

Coauthors

All papers

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  1. Ultrastrong Coupling of the Cyclotron Transition of a 2D Electron Gas to a THz Metamaterial

    Authors: , , , , , , , , , , - Science 2012 cited by 577

  2. Engineering quantum materials with chiral optical cavities

    Authors: , , , , , , - Nature Materials 2020 cited by 272

  3. Quantum Cascade Laser

    Authors: , , , , , - Science 1994 cited by 4,474

  4. Lasing in direct-bandgap GeSn alloy grown on Si

    Authors: , , , , , , , , , , , , , - Nature Photonics 2015 cited by 1,231

  5. Mid-infrared frequency comb based on a quantum cascade laser

    Authors: , , , , - Nature 2012 cited by 844

  6. Dual-comb spectroscopy based on quantum-cascade-laser frequency combs

    Authors: , , , - Nature Communications 2014 cited by 526

  7. Entanglement harvesting from electromagnetic quantum fields

    Authors: , , , , - Physical review. A/Physical review, Physical review. A/Physical review, A 2024 cited by 27

  8. Single-Shot Sub-microsecond Mid-infrared Spectroscopy on Protein Reactions with Quantum Cascade Laser Frequency Combs

    Authors: , , , , , , , - Analytical Chemistry 2018 cited by 163

  9. Controlling the sign of quantum interference by tunnelling from quantum wells

    Authors: , , , , - Nature 1997 cited by 363

  10. Probing vacuum field fluctuations and source radiation separately in space and time

    Authors: , , , - Physical Review Research 2023 cited by 12

  11. Room-temperature nine-µm-wavelength photodetectors and GHz-frequency heterodyne receivers

    Authors: , , , , , , , , , , , , , - Nature 2018 cited by 283

  12. Octave-spanning semiconductor laser

    Authors: , , , - Nature Photonics 2014 cited by 280

  13. Highly tunable hybrid metamaterials employing split-ring resonators strongly coupled to graphene surface plasmons

    Authors: , , , , , , - Nature Communications 2015 cited by 233

  14. Ultrastrong Coupling Regime and Plasmon Polaritons in Parabolic Semiconductor Quantum Wells

    Authors: , , , , , - Physical Review Letters 2012 cited by 192

  15. Electro-optic interface for ultrasensitive intracavity electric field measurements at microwave and terahertz frequencies

    Authors: , , , , , , , , - Optica 2020 cited by 65

  16. Feasibility study of free-space quantum key distribution in the mid-infrared

    Authors: , , , , , , , - Quantum Information and Computation, Quantum Inf. Comput. 2008 cited by 31

  17. Continuous Wave Operation of a Mid-Infrared Semiconductor Laser at Room Temperature

    Authors: , , , , , , , - Science 2002 cited by 781

  18. High-Power Directional Emission from Microlasers with Chaotic Resonators

    Authors: , , , , , , , - Science 1998 cited by 723

  19. Nonparabolicity and a sum rule associated with bound-to-bound and bound-to-continuum intersubband transitions in quantum wells

    Authors: , , , - Physical review. B, Condensed matter 1994 cited by 320

  20. Sensitive absorption spectroscopy with a room-temperature distributed-feedback quantum-cascade laser

    Authors: , , , , , , , - Optics Letters 1998 cited by 275

  21. Gain without inversion in semiconductor nanostructures

    Authors: , , , , - Nature Materials 2006 cited by 246

  22. Thermoelectrically cooled THz quantum cascade laser operating up to 210 K

    Authors: , , , , , - Applied Physics Letters 2019 cited by 228

  23. Quantum Cascade Detectors

    Authors: , , , , , , , , , , , , , , - IEEE Journal of Quantum Electronics 2009 cited by 217

  24. Widely tunable mode-hop free external cavity quantum cascade lasers for high resolution spectroscopy and chemical sensing

    Authors: , , , , , , , , , , , , - Applied Physics B 2008 cited by 213