Русский

Laser gyroscopes measure small changes in daytime length on Earth

752
2023-09-19 14:36:29
Посмотреть перевод

Recently, scientists used laser gyroscopes to measure that the change in Earth's rotational speed is less than one millionth. This technology can help scientists understand the complex flow of water and air, which can cause the smallest adjustments to the Earth's rotation.

The Earth's rotation is not completely stable. Planets accelerate or slow down as they rotate, slightly shortening or prolonging a day by a few milliseconds. Many of these changes are well-known. For example, one of the changes is caused by tidal forces, which are generated by the gravitational pull of the moon and sun, causing the Earth to deform. Scientists know how to predict these effects on Earth's rotation. However, other changes caused by fluctuations in the Earth's atmosphere and water bodies are more difficult to estimate.

The gyroscope, known as the "G", is located at the Wetzl Geodetic Observatory in Germany and aims to measure these small impacts. This is the so-called ring laser gyroscope. In it, the laser beam propagates around a square ring of 4 meters on each side. One bundle rotates clockwise, while the other bundle rotates counterclockwise. The wavelength of a beam of light that is aligned with the direction of Earth's rotation will be elongated, while a beam of light that propagates against the direction of Earth's rotation will contract. When combined, two beams of light with slightly different wavelengths will generate a "beat" signal, similar to two slightly out of tune notes.

Researchers reported in the September 18th issue of the journal Nature Photonics that this rhythm reveals the speed of Earth's rotation, allowing G to measure the length of a day with an accuracy of over one millisecond.

Other methods of measuring the Earth's rotational speed rely on external references. For example, telescopes can use the position of distant quasars (bright cores of active galaxies) to determine the degree of Earth's rotation. But these technologies provide the average results within a day. G measures the rotation rate every few hours. Its measurements were conducted in an underground laboratory.

Physicist Ulrich Schreiber of the Technical University of Munich stated that there is no need to understand the external world, "because gyroscopes measure absolute rotation." This means that the rotation it measures is not relative to other references, but rather the rotation itself.

Scientists have previously measured the Earth's rotation and tilt using other laser gyroscopes (SN: 7/17/20). But they have not yet measured the length of a day to the high accuracy achieved by G. The gyroscope is also stable enough to operate continuously for several months, allowing researchers to sort out changes that occur over a long time scale.

The function of G is unique: "This measurement is considered impossible for other detectors," said physicist Angela Di Virgilio of the National Institute of Nuclear Physics in Pisa, Italy, who was not involved in the new study. Therefore, they obtained some results from this impressive instrument, which is a good thing.

These measurements can help scientists improve their models of Earth's air circulation and ocean currents. In the future, scientists hope to measure more elusive effects through improved ring laser gyroscopes. According to Albert Einstein's general theory of relativity, rotating planets drag spacetime. A ring laser gyroscope may one day perceive the twists and turns of time and space.

Source: Laser Network

Связанные рекомендации
  • Latest breakthrough! 3500W free output blue semiconductor laser

    The 3500W free output blue semiconductor laser beam is output in a free space manner, with a rectangular spot directly acting on the material surface without the need for fiber optics or laser processing heads. This laser has a wavelength of 455 ± 10nm, with continuously adjustable power and a maximum output power of over 3500W. It is mainly used for non-ferrous metal cladding, quenching, etc., to...

    2024-09-03
    Посмотреть перевод
  • 150 kW Ultra High Power Laser Sensor Released

    Recently, MKS announced the launch of a brand new Ophir ® A 150 kW ultra-high power laser sensor designed specifically for measuring ultra-high power levels up to 150 kW. This sensor has excellent accuracy and reliability, suitable for industrial and defense fields.This water-cooled calorimeter has a working wavelength range of 900-1100 nm and can measure power from 10 kW to 150 kW. Its extremely ...

    2024-12-27
    Посмотреть перевод
  • Upgrading 3000W fiber laser to high energy and miniaturization has become a new trend

    Recently, the discussion on "miniaturization" in the domestic laser industry has become increasingly heated. From various exhibition venues, miniaturization and lightweight have become important display directions for fiber laser manufacturers.High energy and miniaturization have become new trendsIn the past few years, high-power has undoubtedly been the main development direction in the field of ...

    2023-09-20
    Посмотреть перевод
  • Lingke LP series industrial connectors provide fast, reliable, and efficient electrical connections for laser equipment

    Laser technology is currently a very mature technology and has been used on various laser equipment, such as laser cutting machines, laser projectors, medical laser equipment, etc. Advanced laser equipment requires high-performance and reliable industrial connectors to provide stable and safe power input and connection, which is one of the key links for the normal operation of laser equipment.Ling...

    2023-10-25
    Посмотреть перевод
  • Xi'an Institute of Optics and Fine Mechanics has made significant progress in attosecond imaging research

    Recently, the Xi'an Institute of Optics and Fine Mechanics of the Chinese Academy of Sciences has made significant progress in attosecond imaging research, achieving high-resolution imaging of ultra wide spectrum light sources. The related results were published in the journal Photonics Research under the title "Snapshot coherent diffraction imaging across ultra wideband spectra".Figure 1. Demonst...

    2024-10-26
    Посмотреть перевод