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A Rapid Laser Probing Method Facilitates the Non-invasive and Contact-free Determination of Leaf Thermal Properties
Published on: January 7, 2017
Light Detection and Ranging (Lidar) provides valuable atmospheric insights by analyzing backscattered laser energy. This technology aids meteorology and atmospheric research by mapping clouds and atmospheric structures, despite signal attenuation challenges.
Area of Science:
- Atmospheric Science
- Remote Sensing
- Optical Physics
Background:
- Lidar (Light Detection and Ranging) utilizes laser pulses to probe atmospheric properties.
- Atmospheric backscattering measurements are fundamental for understanding atmospheric composition and dynamics.
- Signal attenuation complicates direct interpretation but qualitative data remains valuable.
Purpose of the Study:
- To review the principles and applications of Lidar in atmospheric observation.
- To highlight the value of Lidar in operational meteorology and atmospheric research.
- To discuss advanced Lidar techniques and future potential.
Main Methods:
- Utilizing laser energy transmitted in a radar-like manner.
- Measuring atmospheric backscattering intensity as a function of range.
Main Results:
- Qualitative delineation of clouds and atmospheric structures is achievable.
- Atmospheric optical parameters can be evaluated under specific conditions.
- Lidar data correlates with meteorologically significant characteristics.
Conclusions:
- Lidar is a powerful tool for atmospheric research and operational meteorology.
- Advanced techniques like resonant absorption and Raman scattering enhance Lidar capabilities.
- Continued development promises expanded applications and improved atmospheric monitoring.
