Deutsch

Photon chips help drones fly unobstructed in weak signal areas

196
2023-10-28 09:58:39
Übersetzung anzeigen

With funding from the National Science Foundation of the United States, researchers at the University of Rochester are developing photonic chips that use quantum technology called "weak value amplification" to replace mechanical gyroscopes used in drones, enabling them to fly in areas where GPS signals are obstructed or unavailable.

Using this quantum technology, scientists aim to provide the same sensitivity level as large optical gyroscopes on small handheld photonic chips, which may alter the navigation of drones.

Jaime Cardenas, an associate professor at the Institute of Optics, has received a new National Science Foundation grant to develop this chip by 2026.

Cardenas stated that the fiber optic gyroscopes currently used on the most advanced drones include several kilometers of fiber optic spools or have limited dynamic range.

At present, the sensitivity and stability of gyroscopes must be fundamentally balanced between their size and weight. As unmanned aerial vehicles, drones, and satellites become smaller and more common, the demand for ultra compact navigation level gyroscopes will become crucial. The most advanced micro gyroscopes are compact and sturdy, but their performance is insufficient, which hinders their application in navigation.

According to Cardenas, weak amplification has more advantages than traditional methods because it can enhance the interference measurement signal without the cost of amplifying several forms of technical noise. But the previous weak amplification demonstration required complex laboratory settings and precise calibration; Cardenas is committed to achieving weak amplification on micro photonic chips using high-quality factor ring resonators.

Cardenas' collaborators in this project include physicist Andrew Jordan, who was a former faculty member at the University of Rochester and currently works at Chapman University. Cardenas stated that he will also collaborate with the David T. Kearns Leadership and Diversity Center at the university to expand the participation of underrepresented groups and stimulate their desire for STEM careers through research experience with high school students in the Rochester City school district.

Source: OFweek

Ähnliche Empfehlungen
  • Scientists have developed a palm sized femtosecond laser using a glass substrate

    Researchers at the Federal College of Technology in Lausanne (EPFL) have shown that femtosecond lasers suitable for palm size can be manufactured using glass substrates.Can femtosecond lasers made entirely of glass become a reality? This interesting question prompted Yves Bellouard, the head of the Galata laboratory at the Federal Institute of Technology in Lausanne, to embark on a journey after y...

    2023-10-04
    Übersetzung anzeigen
  • Shanghai Optics and Machinery Institute has made progress in the research of new terahertz sources based on Yb lasers

    Recently, the State Key Laboratory of Intense Field Laser Physics of the Chinese Academy of Sciences Shanghai Institute of Optics and Fine Mechanics has made new progress in generating intense field terahertz waves based on Yb laser pumped organic crystals. The relevant research results were published in Applied Physics Letters under the title "Efficient strong field THz generation from DSTMS crys...

    2024-04-09
    Übersetzung anzeigen
  • Synchrotron X-ray imaging technology

    According to a recent study published in the journal Science Advances, it reveals how early mammals grew and developed during critical periods of their long 'life history'. A research team including Queen Mary University of London used synchrotron X-ray tomography technology to image the growth rings in fossilized tooth roots, in order to infer the lifespan, growth rate, and even sexual maturity t...

    2024-08-15
    Übersetzung anzeigen
  • Overview of Inconel 939 Alloy Parts Developed by Additive Manufacturing Process

    The related paper was published in Heliyon under the title "A systematic review of Inconel 939 alloy parts development via additive manufacturing process".IN939 is a modern nickel based high-temperature alloy that can work continuously at high temperatures due to its excellent fatigue resistance, creep resistance, and corrosion resistance. The unique performance of IN939 is related to the composit...

    2024-12-10
    Übersetzung anzeigen
  • Exail acquires laser company Leukos

    On January 6, 2025, Exail acquired Leukos, a laser company specializing in advanced laser sources for metrology, spectroscopy, and imaging applications. The financial terms of this acquisition have not been disclosed yet. Leukos will operate as a subsidiary of Exail, retaining its product portfolio and brand. This acquisition combines Leukos' advanced technologies, including pulsed micro lasers,...

    01-08
    Übersetzung anzeigen