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Showing 1–9 of 9 results
Advanced filters: Author: David Burghoff Clear advanced filters
  • Frequency combs based on terahertz quantum cascade lasers, which combine the high power of lasers with the broadband capabilities of pulsed sources, are demonstrated. The frequency combs generate 5 mW of terahertz power covering a frequency range of almost 500 GHz and produce more than 70 lines at 3.5 THz.

    • David Burghoff
    • Tsung-Yu Kao
    • Qing Hu
    Research
    Nature Photonics
    Volume: 8, P: 462-467
  • Frequency-comb-based multiheterodyne spectroscopy requires that total bandwidth of the measured spectrum covers less than half the comb spacing, which is usually not the case for incoherent spectra. Here, the authors propose a technique that lifts this requirement, and demonstrate it in the microwave regime.

    • David J. Benirschke
    • Ningren Han
    • David Burghoff
    ResearchOpen Access
    Nature Communications
    Volume: 12, P: 1-8
  • Developing longwave infrared technology hide intrinsic challenges but at the same time is important to develop sensing and imaging for detection, ranging, and monitoring systems. Here the authors demonstrate the fabrication of high-quality microresonators in the LWIR with the simple use of native germanium.

    • Dingding Ren
    • Chao Dong
    • David Burghoff
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-8
  • The three-dimensional images generated by digital holography are usually limited to a single color. A new technique exploiting frequency combs generates holograms with hundreds of colors at once.

    • Chao Dong
    • David Burghoff
    News & Views
    Nature Photonics
    Volume: 15, P: 866-867
  • Using an on-chip dispersion measurement platform, we designed an air–dielectric slab double-chirped mirror integrated into a quantum-cascade laser, achieving room-temperature LWIR combs spanning >100 cm−1 at 9.6 µm.

    • Tianyi Zeng
    • Yamac Dikmelik
    • Qing Hu
    ResearchOpen Access
    Light: Science & Applications
    Volume: 14, P: 1-12