Polski

The Stanford University team has manufactured the first practical chip grade titanium sapphire laser

210
2024-07-01 14:11:26
Zobacz tłumaczenie

According to a report in Nature on June 26th, a team from Stanford University in the United States has developed a titanium sapphire laser on a chip. Whether in terms of scale efficiency or cost, this achievement is a huge progress.

 


Image source: Nature website
Titanium sapphire lasers are indispensable in many fields such as cutting-edge quantum optics, spectroscopy, and neuroscience, but they have not been widely applied in the real world. Because this type of laser is usually large in size and expensive, costing hundreds of thousands of dollars per unit, and requiring other high-power equipment (priced at approximately $30000 per unit) to maintain operation.

To solve this problem, researchers first laid a large layer of titanium sapphire on the silica platform; Grind, etch, and polish the titanium sapphire into an extremely thin layer, only a few hundred nanometers thick; Then, design a vortex composed of tiny ridges on the thin layer. These ridges are like fiber optic cables, guiding light to circulate continuously and gradually increasing in intensity. This mode is called a waveguide. Compared with other titanium sapphire lasers, this prototype has reduced its size by 4 orders of magnitude (equivalent to one thousandth of the original) and reduced its cost by 3 orders of magnitude (equivalent to one thousandth of the original).

The remaining part is a microscale heater that can heat the light passing through the waveguide, allowing researchers to change the wavelength of the emitted light and adjust the wavelength range to between 700-1000 nanometers, from red light to infrared light.

In quantum physics, this new laser can significantly reduce the scale of state-of-the-art quantum computers; In the field of neuroscience, it can be applied in optogenetics, allowing scientists to control neurons by guiding light inside the brain through relatively large optical fibers; In ophthalmology, it may be combined with chirped pulse amplification technology in laser surgery to achieve new applications, or provide cheaper and more compact optical coherence tomography technology to evaluate retinal health.

Currently, constantly updated technology allows many laboratories to have ultra small lasers on a single chip, rather than a large and expensive laser. Small size lasers actually help improve efficiency - mathematically speaking, intensity is equal to power divided by area. Therefore, maintaining the same power as large lasers but reducing their concentrated area will result in a significant increase in intensity. More importantly, these compact and powerful lasers can quickly leave the laboratory and serve many different important applications.

Source: Chinese Academy of Sciences

Powiązane rekomendacje
  • Laser additive manufacturing: monitoring during defect occurrence

    Researchers at the Federal Institute of Technology in Lausanne have resolved the long-standing debate surrounding laser additive manufacturing processes through a groundbreaking defect detection method.The development of laser additive manufacturing is often hindered by unexpected defects. Traditional monitoring methods, such as thermal imaging and machine learning algorithms, have shown significa...

    2023-12-06
    Zobacz tłumaczenie
  • Amazemet uses Siemens Xcelerator software for scaling metal 3D printing

    Polish metal 3D printing company Amazemet uses the Xcelerator software combination from industrial manufacturing company Siemens.The spin off company of Warsaw University of Technology is using Siemens workflow management software to develop its metal powder atomizer and 3D printing post-processing equipment.Amazemet was founded in 2016, and its ultrasonic atomization device is capable of producin...

    2024-04-18
    Zobacz tłumaczenie
  • This laser cleaning "dark horse" announces annual performance and shareholder information

    On April 15th local time, Laser Photonics, a developer of laser cleaning equipment and solutions, announced its financial results for the fourth quarter and the year ended December 31, 2023. The financial report shows that in the fourth quarter of 2023, its revenue was $800000, with reduced operating and net losses. Here are the specific data:In addition to the financial report, the company's CEO ...

    2024-04-16
    Zobacz tłumaczenie
  • The team led by Gao Chunqing and Fu Shiyao from Beijing University of Technology has made significant breakthroughs in the study of photon angular momentum regulation

    Recently, a team led by Gao Chunqing and Fu Shiyao from the School of Optoelectronics at Beijing University of Technology combined optical spatial coordinate transformation with photon spin Hall effect to construct a photon angular momentum filter for the first time internationally, achieving on-demand regulation of photon spin angular momentum and orbital angular momentum.The related achievements...

    2023-10-20
    Zobacz tłumaczenie
  • IPG Photonics announces 2024 financial loss of $162 million

    On February 11th, global industrial fiber laser giant IPG Photonics announced its financial performance for the fourth quarter and full year of 2024. Annual sales have fallen below the $1 billion mark for the first time, with a year-on-year decline of 24% and a pre tax loss of up to $162 million. As an industry leader, IPG's financial report not only reflects the deep adjustment faced by the ind...

    02-13
    Zobacz tłumaczenie