HomeNewsIndia NewsSphere of light explores semiconductor crystals for energy savings

    Sphere of light explores semiconductor crystals for energy savings

    A new technique has been developed by research scientists of Tohuku University, which uses a hollow sphere to measure the electronic and optical properties of large semiconducting crystals. This new technique improves on current photoluminescence spectroscopy techniques and could lead to energy savings for mass producers, and thus consumers, of power devices.

    Electronic devices like transistors and microprocessor chips are made by Semiconducting crystals. Manufacturers need to be able to detect crystal defects and test their energy conversion efficiency. One way to do this is to measure their ‘internal quantum efficiency’, or their ability to generate photons from electrons excited by an electric current or an excitation laser. Currently available methods limit the sample size that can be tested at a time. Advanced materials scientist Kazunobu Kojima of Tohoku University and colleagues devised a modified approach to photoluminescence spectroscopy that can test larger samples.

    A relative amount of light emitted by a semiconductor crystal, is detected by standard photoluminescence spectroscopy, when an excitation laser is shone on it.

    Light energy is lost through these excitation and emission processes, so scientists have been experimenting with photoluminescence spectroscopy that uses an ‘integrating sphere’ to minimize the loss of photons, the elementary particles of light.

    Integrating spheres collect both the excitation light and the light emitted from a sample lying inside it, where the light is diffusively reflected inside until it becomes uniformly dispersed. The uniform distribution of light improves the accuracy and repeatability of internal quantum efficiency testing. But this means that the size of the crystal being tested is ultimately limited by the size of the sphere.

    Kojima and colleagues found they could still test the internal quantum efficiency of a crystal when it was placed directly outside the sphere, allowing larger samples to be used.

    They conducted their tests on a semiconducting crystal called gallium nitride, which is commonly used in LEDs and is expected to be used in electronic devices because of its superior properties.

    “This ‘omnidirectional photoluminescence’ spectroscopy can be used to evaluate the quality of large-sized crystals or semiconductor wafers, which are essential for the mass production of power devices,” says Kojima, adding that this could lead to energy saving and reduce production costs.

    ELE Times Research Desk
    ELE Times Research Deskhttps://www.eletimes.ai
    ELE Times provides a comprehensive global coverage of Electronics, Technology and the Market. In addition to providing in depth articles, ELE Times attracts the industry’s largest, qualified and highly engaged audiences, who appreciate our timely, relevant content and popular formats. ELE Times helps you build awareness, drive traffic, communicate your offerings to right audience, generate leads and sell your products better.

    Related News

    Must Read

    Keysight to Demonstrate NR-NTN devices Mobility Testing at MWC 2026 in Collaboration with Samsung

    Keysight Technologies, Inc. will demonstrate lab-based validation of new...

    ROHM Strengthens Supply Capability for GaN Power Devices

    Combining TSMC’s Process Technology to Build an End-to-End, In-Group...

    element14 Community launches smart security and surveillance design challenge

    element14, an Avnet Community, in collaboration with ADI, has...

    R & S and LITEON demonstrate high‑throughput 5G femtocell testing with the PVT360A

    Rohde & Schwarz and LITEON collaborate to showcase a...

    Infineon presents MCU and sensor solutions for the future of AI, IoT, mobility, and robotics

    Next-generation embedded systems are essential for applications in the...

    R&S advances AI-RAN testing using digital twins in collaboration with NVIDIA

    Rohde & Schwarz will showcase a new milestone in...

    Top Seven Tech Trends in the semiconductor sector for 2026

    By: STMicroelectronics In 2026, a new class of intelligent machines...

    Keysight launches next-gen Infiniium XR8 Oscilloscopes for faster analysis, clearer insights, and a compact design

     Keysight Technologies introduced its next-generation Infiniium XR8 Real-Time oscilloscopes,...