简体中文

A new type of flexible reflective mirror can improve the performance of X-ray microscopy

135
2024-05-06 16:31:46
查看翻译

A research team in Japan has designed a flexible and shapable X-ray reflector, achieving significant accuracy and higher stability at the atomic level.
This new technology, developed by Satoshi Matsuyama and Takato Inoue from the Graduate School of Engineering at Nagoya University, in collaboration with the Japanese Institute of Physical and Chemical Research and JTEC Corporation, improves the performance of X-ray microscopy and other technologies that use X-ray mirrors. The relevant results were published in the journal Optica.

A new type of deformable mirror for X-ray microscopy, achieving high image resolution through wavefront correction.


X-ray microscope is an advanced imaging tool that serves as a bridge between electron microscopy and optical microscopy. It uses X-rays that provide better resolution than light and can penetrate thick samples that electrons cannot penetrate. This enables imaging of structures that are difficult to see with other microscopy techniques.

X-ray microscopes have high resolution, making them particularly important in fields such as materials science and biology, as they can observe the composition, chemical state, and structure inside samples.

Reflectors play a crucial role in X-ray microscopy. They can reflect X-ray beams and perform high-resolution imaging on complex structures. High quality images and accurate measurements are essential, especially in cutting-edge scientific fields such as catalyst and battery detection.
However, due to the small wavelength of X-rays, they are easily distorted due to small manufacturing defects and environmental influences. This will generate wavefront aberrations, thereby limiting the resolution of the image. Matsuyama and his collaborators solved this problem by creating a deformable mirror and adjusting its shape based on the detected X-ray wavefront.

The X-ray microscopy images showed higher resolution after using the new deformable mirror. The left and right images are the images before and after shape correction, respectively.

In order to optimize their mirrors, researchers studied piezoelectric materials. These materials are very useful because they can deform or change shape when an electric field is applied. In this way, even if there is a slight deviation in the detected radio waves, the material can reshape its own shape and respond accordingly.

After considering various compounds, researchers chose lithium niobate single crystal as a shape changing mirror. Single crystal lithium niobate is very useful in X-ray technology because it can expand and contract under the action of an electric field, and form a high reflective surface through polishing. This allows it to serve as both an actuator and a reflective surface, simplifying the equipment.

Matsuyama said, "Traditional X-ray deformable mirrors are made by bonding glass substrates and PZT plates. However, connecting different materials together is not ideal and can lead to instability. To overcome this problem, we used single crystal piezoelectric materials, which are made of uniform materials and do not require bonding, thus having extremely high stability. Due to their simple structure, the mirror can freely deform, achieving atomic level accuracy. In addition, this accuracy can be maintained for 7 hours, confirming its extremely high stability.".

When testing their new equipment, Songshan's team found that their X-ray microscope exceeded expectations. Its high resolution makes it particularly suitable for observing microscopic objects, such as semiconductor device components.

Compared to the spatial resolution of traditional X-ray microscopes (usually 100 nanometers), their technology has the potential to develop microscopes with a resolution about 10 times higher (10 nanometers) because aberration correction makes them closer to the ideal resolution.
Matsuyama said, "This achievement will drive the development of high-resolution X-ray microscopes, which have always been limited by manufacturing process accuracy. These mirrors can also be applied to other X-ray equipment, such as lithography equipment, telescopes, CT in medical diagnosis, and X-ray nanobeam formation."

Related links: https://phys.org/news/2024-05-mirror-flexibly-ray-microscopes.html

Source: Physicist Organization Network

相关推荐
  • Lidar manufacturer RAYZ has completed a round A financing of nearly 100 million yuan

    Recently, RAYZ, a leading research and production company for high-performance LiDAR, announced the successful completion of the A-round financing. This round of financing was led by SMIC Juyuan, and well-known institutions such as Juntong Capital, Feitu Capital, Qiandao Investment, and Qiyu Chuangying also participated in this round of financing. The new round of financing will be used for the re...

    2023-10-20
    查看翻译
  • The LANL laboratory in the United States uses quantum light emitters to generate single photon light sources

    Recently, the Los Alamos National Laboratory (LANL) in the United States has developed a method for quantum light emitters, which stacks two different atomic thin materials together to achieve a light source that generates circularly polarized single photon streams. These light sources can also be used for various quantum information and communication applications.According to Han Htoon, a researc...

    2023-09-01
    查看翻译
  • Scientists have made breakthrough progress in using laser to cool sound waves

    A group of researchers from the Max Planck Institute of Optoelectronics has made a significant breakthrough in using laser cooling to travel sound waves. This development brings us one step closer to the quantum ground state of sound in waveguides, which is of great significance for quantum communication systems and future quantum technology.By using laser cooling, scientists can significantly red...

    2024-01-22
    查看翻译
  • Jenoptik announces record high preliminary performance for 2024

    Recently, Jenoptik, a German company, released its preliminary performance for 2024, delivering a record high in both revenue and profit, but also revealing hidden concerns amidst industry cyclical fluctuations. Against the backdrop of weak demand in the semiconductor equipment market and increasing global economic uncertainty, this company with laser and optical technology as its core is attempti...

    02-14
    查看翻译
  • Cannon-Brookes spotlights Singapore with SunCable solar

    Billionaire Mike Cannon-Brookes' plan to export clean energy from Australia to Singapore via a 4,200km undersea cable has gained new momentum after taking control of the stalled project.Cannon-Brookes' Grok Ventures has completed its acquisition of SunCable from the government and is advancing talks with authorities in Singapore and Indonesia, the investment firm said on Thursday. The revised plan...

    2023-09-08
    查看翻译