Italiano

The LANL Laboratory in the United States has achieved a light source that generates a circularly polarized single photon stream using a quantum light emitter

340
2023-09-02 14:48:48
Vedi traduzione

Los Alamos National Laboratory (LANL) has developed a method for a quantum light emitter that stacks two different atomically thin materials together to achieve a light source that produces a stream of circularly polarized single photons. These light sources can in turn be used for a variety of quantum information and communication applications.

According to Los Alamos researcher Han Htoon, the work shows that single-layer semiconductors can emit circularly polarized light without the need for an external magnetic field.

"This effect has previously only been possible with high magnetic fields generated by bulky superconducting magnets, by coupling quantum emitters to very complex nanoscale photonic structures, or by injecting spin-polarized charge carriers into the quantum emitters." Our proximity effect approach has the advantage of low manufacturing costs and high reliability."

Polarization states are a means of encoding photons, so this result is an important step in the direction of quantum cryptography, or quantum communication. "With a light source that produces a single photon stream and introduces polarization, we basically have two devices in one."

The team stacked a single-molecule thick layer of tungsten diselenide semiconductors on top of a thicker layer of magnetic nickel-phosphorus trisulfide semiconductors. Using an atomic force microscope, the team created a series of nanoscale indentations on a thin layer of material.

When the laser is focused on the pile of material, the 400 nanometer-diameter indentation created by the atom microscope tool has two effects. First, the indentation forms a "well" or "depression" in the potential energy landscape. The electrons of the tungsten diselenide monolayer fall in the depression. This stimulates the emission of a single photon from the trap.

The nanoindentation also destroys the typical magnetic properties of the underlying nickel-phosphorus trisulfide crystals, creating a local magnetic moment pointing outward from the material. This magnetic moment causes the emitted photon to be circularly polarized. To experimentally confirm this mechanism, the team first conducted high-magnetic field spectroscopy experiments in collaboration with the Pulse Field Facility at the Los Alamos National High Magnetic Field Laboratory. The team then worked with the University of Basel in Switzerland to measure the tiny magnetic field of the local magnetic moment.

The team is now exploring ways to modulate the degree of circular polarization of single photons through electronic or microwave stimulation. This ability would provide a way to encode quantum information into a stream of photons. Further coupling of the photon stream to the waveguide will provide the photonic circuit so that the photons propagate in one direction. Such circuits will become a fundamental component of an ultra-secure quantum Internet.

Source: OFweek

Raccomandazioni correlate
  • Important Discovery in Aluminum Alloy Laser Coaxial Fusion Additive Manufacturing

    Aluminum alloy has unique advantages such as lightweight, high strength, and excellent corrosion resistance, and is highly favored in the aerospace manufacturing field. Laser Coaxial Fusion Additive Manufacturing (LCWAM) adopts beam shaping technology, which uses wire as the deposition material to melt and stack layer by layer. Compared to traditional side axis wire feeding technology, laser coaxi...

    2024-04-29
    Vedi traduzione
  • Measurement of spectral line intensity of NO2 near 6.2 microns using a quantum cascade laser spectrometer

    Recently, a joint research team from the Key Laboratory of Optoelectronic Information Acquisition and Processing of Anhui University, the Laboratory of Laser Spectroscopy and Sensing of Anhui University, and Ningbo Haier Xin Optoelectronic Technology Co., Ltd. published a paper titled "Measures of line strengths for NO2 near 6.2" μ Research paper on using a quantum cascade laser spectrometer.Re...

    2024-01-02
    Vedi traduzione
  • Tongkuai and KDPOF launch their first 980 nm multi gigabit automotive interconnection system

    Tongkuai Optoelectronic Devices, a global leader in vertical cavity laser emitters (VCSEL) and laser diodes (PD) solutions based in Germany, and a Spanish expert in high-speed optical network solutions, KDPOF, showcased the first 980 nm multi gigabit interconnect system for automotive systems at last week's ECOC.Both companies are committed to achieving the most advanced optical data communication...

    2023-10-17
    Vedi traduzione
  • Scientists use glass to create femtosecond lasers

    Image source: Federal Institute of Technology in Lausanne, SwitzerlandScience and Technology Daily, Beijing, September 27th (Reporter Zhang Jiaxin) Commercial femtosecond lasers are manufactured by placing optical components and their mounting bases on a substrate, which requires strict alignment of optical components. So, is it possible to manufacture femtosecond lasers entirely from glas...

    2023-09-28
    Vedi traduzione
  • Nanchang University research progresses in acoustic resolution photoacoustic microimaging enhancement

    As a promising imaging modality that combines the high spatial resolution of optical imaging and the deep tissue penetration ability of ultrasound imaging, photoacoustic microscopy (PAM) has attracted a lot of attention in the field of biomedical research, and has a wide range of applications in many fields, such as tumor detection, dermatology, and vascular morphology assessment. Depending on the...

    2024-09-18
    Vedi traduzione