繁体中文

Microscopic Marvel photon devices have the potential to completely change the way physics and lasers are processed

444
2024-06-04 15:20:04
查看翻譯

Researchers at Rensselaer Institute of Technology have developed a device that operates at room temperature, which is the first topological quantum simulator to operate under strong light matter interaction mechanisms, making high-tech research easier in cutting-edge ways.

Researchers at Rensselaer Institute of Technology have developed a device no larger than human hair, which will enable physicists to explore the fundamental concepts of matter and light. This study, published in the journal Nature Nanotechnology, can also help researchers develop more efficient lasers that are being used in a range of fields such as medicine and manufacturing.

This device is composed of a specific material called photonic topological insulator, which can guide photons (wave shaped particles formed into light) to specially designed interfaces without dispersing them in the material.

Topological insulators can simulate the behavior of multiple photons in a coherent manner, enabling them to act as micro laboratories to study quantum phenomena at very small scales.

Professor RPI and senior author of Natural Nanotechnology, Wei Bao, pointed out that our photonic topological insulator is a significant breakthrough in the field of fundamental physics. Its unique design allows materials to operate at room temperature, which was previously a challenge due to expensive equipment.

Our progress in energy-saving lasers has led to a seven fold increase in energy demand for room temperature equipment, which is much higher than previously developed low-temperature equipment.
RPI scientists have designed a new mechanism that utilizes the same techniques as in semiconductor manufacturing, involving atomic and molecular layers to create appropriate structures.

Our progress in energy-saving lasers has led to a seven fold increase in energy demand for room temperature equipment, which is much higher than previously developed low-temperature equipment.

RPI scientists have designed a new mechanism that utilizes the same techniques as in semiconductor manufacturing, involving atomic and molecular layers to create appropriate structures.

The device was manufactured by researchers who grew ultra-thin plates of halide perovskite, a crystal containing cesium, lead, and chlorine, and produced a polymer on it. They sandwiched these crystal plates and polymers between thin sheets of different oxide materials to create an object approximately 2 microns thick and 100 microns wide, which is roughly the same length and width as ordinary human hair.

When researchers applied lasers to devices, they observed a triangular pattern that lit up at the interface designed in the material. This mode is caused by the topology characteristics of the laser determined by the device design.

Shekhar Garde, Dean of the RPI School of Engineering, emphasized the prospects of studying quantum phenomena at room temperature.
The study of atmospheric carbon capture in the Mesozoic volcanic regions of central China is the main topic discussed in Nature Nanotechnology. The title of this paper is "The Cohesive Phenomenon in Topological Valley Halls".
Funding from the National Science Foundation and the Office of Naval Research has played an important role in funding this research.

Source: Laser Net

相關推薦
  • 20W High Power Fiber Optic Frequency Comb with 10 to 19 Power Outside Ring Frequency Stability

    High power optical frequency combs play a crucial role in nonlinear precision spectroscopy, extreme ultraviolet optical frequency comb generation, nuclear atomic clock research, and other fields. Fiber optic femtosecond lasers are the preferred solution for achieving high power optical frequency combs due to their simple structure, stable performance, and easy amplification. However, due to the un...

    2023-10-20
    查看翻譯
  • Lockheed Martin announces expansion of 16000 square feet 3D printing center

    Recently, US military industry giant Lockheed Martin announced that it will significantly increase its additive manufacturing capabilities and expand its factory in Texas. The expansion project includes approximately 16000 square feet of dedicated space for 3D printing technology, and the addition of some of the largest large format multi laser printers in the space (it is worth noting that Lockhe...

    2024-12-02
    查看翻譯
  • Wuhan Semiconductor Laser Equipment Industry Innovation Joint Laboratory Achieves New Breakthrough

    On February 7th, at the Wuhan Semiconductor Laser Equipment Industry Innovation Joint Laboratory located in the HGTECH Technology Intelligent Manufacturing Future Industrial Park, Huang Wei, the technical director of the laboratory and the director of HGTECH Technology's semiconductor product line, gestured with his hands to introduce the principle of "glass through-hole technology" to Changjiang ...

    02-18
    查看翻譯
  • Xi'an Institute of Optics and Fine Mechanics has made new progress in the field of metasurface nonlinear photonics

    Recently, the Research Group of Nonlinear Photonics Technology and Applications in the State Key Laboratory of Transient Optics and Photonics Technology of Xi'an Institute of Optics and Fine Mechanics has made important progress in the field of super surface nonlinear photonics. Relevant research results were published in the internationally famous journal Nanoscale Horizons. The first author of t...

    2024-09-27
    查看翻譯
  • CinIonic launches a new cinema screen specifically designed for laser theaters

    CinIonic announced the launch of a new cinema screen specifically designed for laser auditoriums. CinIonic Laser Screen 2.4 amplifies the power of laser projection by optimizing efficiency and enhancing screen presentation. This new screen is aimed at becoming the ideal companion for CinIonic Laser and is the first screen product in the CinIonic All Laser Solution portfolio.The CinIonic laser scre...

    2023-09-20
    查看翻譯