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18556953. LASER ELEMENT AND ELECTRONIC DEVICE simplified abstract (SONY GROUP CORPORATION)

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LASER ELEMENT AND ELECTRONIC DEVICE

Organization Name

SONY GROUP CORPORATION

Inventor(s)

Masanao Kamata of Tokyo (JP)

Gen Yonezawa of Tokyo (JP)

LASER ELEMENT AND ELECTRONIC DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18556953 titled 'LASER ELEMENT AND ELECTRONIC DEVICE

Simplified Explanation:

This patent application aims to prevent a temperature rise in an optical resonator and avoid damage caused by laser light condensing.

Key Features and Innovation:

  • Suppression of temperature rise in an optical resonator.
  • Prevention of damage due to laser light condensing.

Potential Applications: This technology can be used in various laser systems, optical devices, and scientific instruments where precise temperature control is crucial.

Problems Solved: The technology addresses the issue of thermal damage to optical resonators and the potential risks associated with laser light condensing.

Benefits:

  • Enhanced durability and longevity of optical resonators.
  • Improved performance and stability of laser systems.
  • Reduced maintenance and repair costs.

Commercial Applications: The technology can be applied in industries such as telecommunications, medical devices, research laboratories, and manufacturing processes where laser technology is utilized.

Questions about the Technology: 1. How does this technology compare to existing methods of temperature control in optical resonators? 2. What are the specific parameters that need to be monitored to ensure the effectiveness of this technology?

Frequently Updated Research: Stay updated on the latest advancements in laser technology, optical resonators, and temperature control methods to enhance the application of this innovation.


Original Abstract Submitted

A temperature rise in an optical resonator can be suppressed, or damage to the optical resonator due to laser light condensing can be avoided.

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