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Lidar.

Applied optics·2010
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Related Experiment Video

Updated: Jul 11, 2026

Field Measurement of Effective Leaf Area Index using Optical Device in Vegetation Canopy
06:28

Field Measurement of Effective Leaf Area Index using Optical Device in Vegetation Canopy

Published on: July 29, 2021

Lidar Observation of Cloud.

R T Collis

    Science (New York, N.Y.)
    |August 27, 1965
    PubMed
    Summary

    Light detection and ranging (Lidar) uses laser pulses to detect small atmospheric particles, offering an optical alternative to radar. This technology analyzes backscattered light to measure atmospheric composition and range with high sensitivity.

    Area of Science:

    • Atmospheric optics and remote sensing.
    • Optical physics and instrumentation.

    Background:

    • Lidar, or light detection and ranging, functions as the optical analog to meteorological radar.
    • Optical wavelengths enable the detection of significantly smaller atmospheric particles compared to microwave wavelengths used in radar.

    Purpose of the Study:

    • To describe the fundamental principles and instrumentation of Lidar technology.
    • To highlight Lidar's capability in detecting fine atmospheric particles.

    Main Methods:

    • Utilizes a laser as a power source to emit intense, short pulses of monochromatic light via a lens system.
    • Employs a telescope coaligned with the transmitter to collect backscattered atmospheric light.
    • A narrow-pass filter and photomultiplier detect the backscattered light, isolating the transmitted frequency.

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    Echo Particle Image Velocimetry
    16:31

    Echo Particle Image Velocimetry

    Published on: December 27, 2012

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    Last Updated: Jul 11, 2026

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    Measurement of Aerosols Optical Thickness of the Atmosphere using the GLOBE Handheld Sun Photometer
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    Echo Particle Image Velocimetry
    16:31

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    Published on: December 27, 2012

    Main Results:

    • Demonstrates the capacity of Lidar to detect very small atmospheric particles due to its optical wavelength operation.
    • Data visualization is achieved using an oscilloscope, displaying signal intensity against range (A-scope).

    Conclusions:

    • Lidar provides a sensitive method for atmospheric profiling by detecting fine particles.
    • The described setup allows for detailed analysis of atmospheric backscatter.