Türkçe

Optical Drive Magnetic Control: A Breakthrough in Memory Technology

186
2024-01-06 14:21:21
Çeviriyi gör

A recent study conducted by the Hebrew University suggests an undiscovered relationship between magnetism and light. This discovery may pave the way for extremely fast optical storage technology and creative optical magnetic sensor technology.

It is expected that this discovery will completely change the way equipment is manufactured and data is stored in a range of fields.

Amir Capua, Professor and Head of the Spintronics Laboratory at the Institute of Applied Physics and Electrical Engineering at the Hebrew University of Jerusalem, reported on significant developments in the field of optomagnetic interactions. The team's surprising discovery demonstrated the process of manipulating solid magnetic states using optical laser beams, providing practical significance for a range of industries.

The discovery of neglected photomagnetic components, which are often overlooked due to the slower reaction of magnets compared to light radiation, contradicts recognized knowledge. The team's research has revealed a new theory: the ability of rapidly oscillating light wave magnetic components to manipulate magnets redefines fundamental physical interactions.

It is interesting that people have found a simple mathematical relationship between the amplitude, frequency, and energy absorption of magnetic materials to characterize the strength of interactions.

This discovery combines concepts from two scientific disciplines that previously had little in common and were closely related to the field of quantum technology. We arrived at this understanding by using principles that have been established in the quantum computing and quantum optics communities, but are less important in the spintronics and magnetism communities.

When magnetic materials and radiation are in a perfect equilibrium state, their interaction is recognized. However, so far, the situation involving radiation and imbalanced magnetic materials has only been described very briefly.

The fundamental principles of quantum computing and quantum optics were discovered in this non-equilibrium field. Using the concepts of quantum physics, we studied this non-equilibrium state in magnetic materials and demonstrated evidence of the fundamental idea that magnets can react to light at a short time scale. In addition, this kind of communication has been proven to be very meaningful and effective.

In addition, the group has also developed a unique sensor that can combine this discovery to identify the magnetic composition of light. Compared to traditional sensors, this innovative design provides adaptability and integration for a wide range of applications, which may alter sensor and circuit design to achieve different uses for light.

Mr. Benjamin Assouline, a doctoral student at the Spintronics Laboratory, conducted this study, which is crucial for this discovery. Recognizing the potential significance of their findings, the team has submitted multiple related patent applications.

The study was funded by the Israel Science Foundation, the Peter Broyd Center for Innovation Engineering and Computer Science, and the Center for Nanoscience and Nanotechnology at the Hebrew University of Jerusalem.

Source: Laser Net

İlgili öneriler
  • Researchers propose NeuFlow: an efficient optical flow architecture that can solve high-precision and computational cost issues

    Real time and high-precision optical flow estimation is crucial for analyzing dynamic scenes in computer vision. Although traditional methods are fundamental, they often encounter issues with computation and accuracy, especially when executed on edge devices. The emergence of deep learning has driven the development of this field, providing higher accuracy, but at the cost of sacrificing computati...

    2024-03-23
    Çeviriyi gör
  • Leading listed laser company Novanta moves to new location

    Recently, Novanta, a pioneer in advanced laser and optical subsystems for medical and industrial applications, announced that the company will relocate from its original official address (Emery Court in Stockport, UK) to a state-of-the-art 70000 square foot factory facility in nearby Orion Business Park. Its business capabilities will also be expanded fourfold to serve an expanding team and custom...

    2024-08-08
    Çeviriyi gör
  • SuperLight Photonics receives strategic investment from Hamamatsu Ventures

    Recently, SuperLight Photonics, a leading laser technology manufacturer, announced that it has received strategic investment from global venture capital firm Hamamatsu Ventures, which will be used to promote long-term innovation and collaborative development of its laser technology. Hamamatsu Ventures focuses on investing in photonics companies that address future demand expectations, particular...

    2024-10-22
    Çeviriyi gör
  • The INRS camera captures transient events and is suitable for various scenarios such as high-speed LiDAR systems for autonomous driving

    It is reported that the National Institutes of Sciences (INRS) of Canada has developed a camera platform that can achieve cheaper ultra fast imaging through the use of ready-made components, which can be used in various applications.This new device aims to address some of the limitations of current high-speed imaging, including parallax errors and potential damage from pulse illumination. Th...

    2023-10-07
    Çeviriyi gör
  • The globalization of three-color laser technology will be further accelerated

    Recently, the IFA2023 Consumer Electronics Show in Berlin, Germany opened, Hisense exhibited "three-color laser projection family bucket" attracted the attention of media and tourists from all over the world.Since Hisense's young fashion brand Vidda launched a series of three-color laser projection, its accumulation based on three-color laser technology is competing globally and has become a...

    2023-09-04
    Çeviriyi gör