Español

New nanophotonic circuits demonstrate the potential of quantum networks

944
2024-08-14 11:21:40
Ver traducción

The Purdue University team in the United States has captured alkali metal atoms (cesium) in integrated photonic circuits, which can serve as transistors for photons (the smallest energy unit of light). These captured atoms demonstrate for the first time the potential of cold atom integrated nanophotonic circuits to construct quantum networks. The research results were published in the latest issue of Physical Review X.

The newly developed technology utilizes laser cooling to capture atoms in integrated nanophotonic circuits. Light propagates through a tiny photon "line" (a waveguide that is 1/200 thinner than a human hair). These atoms are frozen to minus 273.15 degrees Celsius and are essentially in a static state. At such low temperatures, atoms can be captured by a pulling beam aimed at a photonic waveguide and placed at a distance much shorter than the wavelength of light (approximately 300 nanometers). Within this distance, atoms can effectively interact with photons in the photonic waveguide.

Researchers are conducting experiments
Using the most advanced nanomanufacturing instruments, the team designed a photonic waveguide into a circular structure with a diameter of approximately 30 microns, forming a so-called micro ring resonator. Light will circulate within the micro ring resonator and interact with the captured atoms.

This atomic coupled micro ring resonator is like a transistor for photons. People can use these captured atoms to control the flow of light through circuits. If atoms are in the correct state, photons can be transmitted through circuits. If the atom is in another state, photons will be completely blocked. The stronger the interaction between atoms and photons, the more effective the "gate" of passage and obstruction.

The team captured up to 70 atoms, coupling them all to photons and controlling their transmission on an integrated photonic chip, achieving a "collective" high-intensity interaction with light.

This research result can provide photon links for future distributed quantum computing based on neutral atoms. It can also serve as a new experimental platform for studying light matter interactions or ultra cold molecules.

Source: Opticsky

Recomendaciones relacionadas
  • The "white" laser device from startup Superlight Photonics will completely transform imaging

    Superlight Photonics, a start-up company headquartered in Enshurd, has developed a broadband laser chip that can replace the bulky and power consuming technology currently used in advanced imaging and metering equipment.This idea suddenly appeared in his mind, while moving his other belongings from Germany to his new home in Enschede. During his doctoral research at the Max Planck Institute of Mul...

    2023-10-28
    Ver traducción
  • New Progress in Research on Three Lattice Photonic Crystal Surface Emission Lasers at Changchun Institute of Optics and Mechanics

    Recently, Tong Cunzhu, the research team of the Chinese President of Science, Chunguang Institute of Mechanical Mechanics, made important progress in the research field of photonic crystal surface emitting lasers (PCSEL), proposed a three lattice structure and achieved a low threshold 1550nm PCSEL. Relevant achievements were published in Light: Science and Application vol.13, 442024, and the famou...

    2024-03-15
    Ver traducción
  • New Meltio robot unit provides large-scale line laser DED

    Meltio is an expert in the field of cost-effective linear laser metal deposition additive manufacturing technology (directed energy deposition, DED) and has launched the new Meltio Robot Cell, a turnkey metal additive manufacturing solution equipped with industrial robotic arms and the recently launched slicing software Meltio Space.The new hardware aligns with the vision of this Spanish company t...

    2023-09-22
    Ver traducción
  • Coherent launches 12 kW sheet metal laser cutting processing head

    Recently, Coherent, an industrial laser technology giant, announced the launch of a new 2D laser cutting head - CUT12, which combines excellent performance, high versatility, and profound value for the global flat cutting market. Image source: CoherentThe CUT12 sheet metal laser cutting processing head is perfectly compatible with fiber lasers in the power range of 4 kW-12 kW (continuous wave),...

    2024-10-29
    Ver traducción
  • Using attosecond pulses to reveal new information about the photoelectric effect

    Scientists from the Stanford National Accelerator (SLAC) laboratory of the US Department of Energy have revealed new information about the photoelectric effect using attosecond pulses: the delay time of photoelectric emission is as long as 700 attosecond, far exceeding previous expectations. The latest research challenges existing theoretical models and helps to reveal the interactions between ele...

    2024-09-02
    Ver traducción