Español

Laser link between European Space Agency containers and space

380
2024-02-12 20:26:15
Ver traducción

The latest expansion of the European Space Agency's laboratory is essentially portable: this European Space Agency's mobile optical ground station is housed in a standard container and can be transported throughout Europe as needed for laser based optical communication with satellites - including NASA's Psyche mission, in space millions of kilometers away.

The station has officially become a part of the Atomic Energy Agency's Optics and Optoelectronics Laboratory and will serve as a flexible testing platform for optical communication hardware and systems. ETOGS can also support other activities that require observing the sky with telescopes or pointing lasers at the sky, such as space debris monitoring or determining orbits through laser ranging.

ETOGS consists of a standard 6-meter long container that has been customized to accommodate telescopes with a diameter of 80 centimeters in the lifting platform and climate control operator area. Laser emitters, receivers, and other required equipment can be connected to this flexible structure to serve each specific activity. The station is hauled by trucks and can be deployed anywhere needed, powered by power accessories, diesel generators, or solar cell modules.

European Space Agency optoelectronic engineer Jorge Pires explained, "The creation of this station is indeed to meet the needs of the rapidly developing optical communication community for flexible testing platforms, rather than being deployable in representative ground environments. One of the most relevant issues in optical communication is to what extent the surrounding environment affects the quality of the link, such as background light in urban areas or atmospheric turbulence caused by weather.".

When it comes to receiving signals from quantum communication systems, this is most crucial because the amount of light involved is very low, and information is transmitted through a single photon. With this station, we can truly start answering these questions by operating at many different locations. By providing our partners with such ready-made testing platforms, we support hardware validation and iteration without the high development costs of using dedicated ground stations.

Optics and quantum technology are expected to completely change connections on a global scale. By using optical pulses with frequencies much higher than radio waves, optical communication can transmit more data at a given moment. Optical communication through optical fiber cable is the foundation of modern terrestrial Internet infrastructure, but the link with satellite still depends on low frequency and low bandwidth radio waves to a large extent.

By utilizing the quantum properties of light, systems such as quantum key distribution will help protect data to a level previously unimaginable; The physical properties of light particles protect the security of encryption key exchange, enabling message transmission to resist eavesdropping by malicious actors.

Jorge added, "The 80cm telescope at this station is the baseline size for quantum key distribution on a commercial scale, so we expect the station to be used to demonstrate and validate satellite based quantum communication.".

The first operational mission of this new European Space Agency asset will be to support the deep space optical communication demonstration of NASA's planned Psyche mission in 2025.

The European Space Agency is collaborating with a European consortium and the National Observatory of Athens to develop and deploy ETOGS at Kryoneri Observatory in Greece to accommodate multi beam ground laser emitters.

Source: Laser Net

Recomendaciones relacionadas
  • Nature Photonics | New Comb Laser Assists Stable and Efficient Generation of Multi wavelength Signals

    Recently, researchers have developed a comb laser with higher stability and efficiency. The use of synthetic reflection self injection locking micro comb design enables the laser to achieve stability and increase conversion efficiency by more than 15 times. This efficient, stable, and easy to manufacture design is expected to make rapid progress in fields such as portable sensors, autonomous navig...

    2024-03-02
    Ver traducción
  • Progress makes laser based imaging simpler and more three-dimensional

    a. b. Schematic diagram of PACTER system calibration and imaging program. BT, beam trap; DAQ, data acquisition unit; HWP, half wave plate; PBS, polarization beam splitter; ER, traverse the relay. The difference between the two modes is highlighted by a black dashed box. c. Schematic diagram of a single component ultrasonic transducer manufactured on ER. d. The ultrasound transducer detected 1D P...

    2023-12-05
    Ver traducción
  • Researchers use lasers to measure and manipulate magnetic ripple interactions

    One vision for computing the future is to use ripples in magnetic fields as the fundamental mechanism. In this application, magnetic oscillators can be comparable to electricity and serve as the foundation of electronic products.In traditional digital technology, this magnetic system is expected to be much faster than today's technology, from laptops and smartphones to telecommunications. In quant...

    2024-03-05
    Ver traducción
  • The Mysteries of Atmospheric Chemistry: Transient Absorption Spectroscopy Study Using FERGIE

    backgroundDr. Daniel Stone's research team from the University of Leeds in the UK is primarily focused on the study of oxidation reactions in the atmosphere and combustion processes. Dr. Stone is particularly interested in the chemical reaction processes of active substances that can control atmospheric composition and fuel combustion processes, such as hydroxide (OH), peroxide (HO2), and Crigee i...

    2024-03-06
    Ver traducción
  • Optical properties of Xinggory Cy3.5 amine/NH2 labeling experiment

    The optical properties of the Cy3.5 amine labeling experiment are an important reason for its application in biomarkers and fluorescence imaging. Cy3.5 is a fluorescent dye belonging to the Cyanine dye family, with high molar extinction coefficient and quantum yield, making it excellent in trace analysis and fluorescence imaging.In the Cy3.5 amine labeling experiment, the dye covalently binds to s...

    2024-03-29
    Ver traducción