Deutsch

Ultra thin two-dimensional materials can rotate the polarization of visible light

805
2024-04-27 13:54:18
Übersetzung anzeigen

For centuries, people have known that light exhibits wave like behavior in certain situations. When light passes through certain materials, they can change the polarization of light waves (i.e. the direction of oscillation). The core components of optical communication networks, such as optical isolators or photodiodes, utilize this characteristic. This type of component allows light to propagate in one direction but blocks all light in the other direction.

In a recent study, physicists from Germany and India showed that ultra-thin two-dimensional materials such as tungsten selenide can rotate the polarization of visible light at certain wavelengths by several degrees under a small magnetic field suitable for chip use. Scientists from the University of M ü nster in Germany and IISER in Pune, India, published their research findings in the journal Nature Communications.

One of the problems with traditional optical isolators is their considerable volume, ranging in size from a few millimeters to a few centimeters. Therefore, researchers are still unable to manufacture micro integrated optical systems on chips that can compete with everyday silicon-based electronic technology. Currently, there are only a few hundred components on integrated optical chips.

Faraday effect in two-dimensional semiconductors
By contrast, computer processor chips contain billions of switching elements. Therefore, the research work of the German and Indian teams has taken a step forward in the development of miniature optical isolators. The two-dimensional materials used by the researchers are only a few atomic layers thick, making them 100000 times thinner than human hair.

Professor Rudolf Bratschitsch from the University of Minster said, "In the future, two-dimensional materials may become the core of optical isolators and enable on-chip integration of current and future quantum optical computing and communication technologies."
Professor Ashish Arora from IISER added, "Even the bulky magnets required for optical isolators can be replaced by atomic level thin two-dimensional magnets. This will greatly reduce the size of photonic integrated circuits."

The research team deciphered the mechanism that led to their discovery: bound electron hole pairs, also known as excitons, in two-dimensional semiconductors cause strong polarization rotation of light when ultra-thin materials are placed in a small magnetic field.
Arora said, "Conducting such sensitive experiments on two-dimensional materials is not easy because the sample area is very small. Scientists had to develop a new measurement technique that is about 1000 times faster than previous methods."

Source: Physicist Organization Network

Ähnliche Empfehlungen
  • High precision laser linkage platform to help precision processing

    With the trend of industrial intelligence and precision processing, the demand for laser precision processing in precision 3C industry, machinery and equipment, new energy vehicles and other industries has developed rapidly, making the application of laser processing technology in the industrial field more comprehensive promotion.Due to the inherent nonlinear characteristics between optics and sca...

    2023-09-11
    Übersetzung anzeigen
  • Aspen Laser launches patented four wavelength Ascent laser series in the medical equipment industry

    Recently, Aspen Laser, an emerging global leader in the medical equipment industry, announced that after several months of trial operation, it has officially launched the Ascent laser series and is ready for shipment. It is reported that this new therapeutic laser series, with its outstanding 32 watt combined power and unique patented four wave laser technology in the industry, once again demons...

    2024-08-12
    Übersetzung anzeigen
  • It is said that laser additive manufacturing is good, but what is the advantage?

    When it comes to additive manufacturing, some people may not have heard of it, but when it comes to its other name: 3D printing, no one is unaware.In fact, the name 'additive manufacturing' better illustrates the essence of this processing method. From ancient times to the present, humans have put in great effort to achieve the goal of processing 'raw materials into the shapes we need'. From the S...

    2023-11-08
    Übersetzung anzeigen
  • Researchers use non classical light to achieve multi photon electron emission

    Strong field quantum optics is a rapidly emerging research topic that integrates nonlinear optoelectronic emission elements rooted in strong field physics with the mature field of quantum optics. Although the distribution of light particles (i.e. photons) has been widely recorded in both classical and non classical light sources, the impact of this distribution on the photoelectric emission proces...

    2024-05-20
    Übersetzung anzeigen
  • Laser Photonics wins a large order from Lufthansa Technologies subsidiary

    Recently, American laser cleaning system developer Laser Photonics announced that the company has successfully secured an order for a cleaning technology laser cleaning system from Lufthansa Technik Puerto Rico, a technology subsidiary of Lufthansa, the largest aviation group in Europe.Lufthansa Technik is the world's largest independent provider dedicated to providing maintenance, repair, and com...

    2023-12-19
    Übersetzung anzeigen