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Second Conference on Space, Atmosphere, Marine, and Environmental Optics (SAME 2024) / Weibiao Chen [and three others], editors.
- Format:
- Book
- Language:
- English
- Subjects (All):
- Fiber optics.
- Physical Description:
- 1 online resource
- Other Title:
- Second Conference on Space, Atmosphere, Marine, and Environmental Optics
- Place of Publication:
- [Place of publication not identified] : SPIE, 2024.
- Summary:
- This PDF file contains the front matter associated with SPIE Proceedings Volume 13189, including the Title Page, Copyright information, Table of Contents, and Conference Committee information.
- Contents:
- Front Matter: Volume 13189
- Second Conference on Space, Atmosphere, Marine, and Environmental Optics (SAME 2024)
- Long-distance coherent detection system based on dual-channel swept source with micro-ring filters
- Research on standard starlight simulator with adjustable background
- Correction of crosstalk in output of fiber optic array in solar radiation measurements
- Analysis of aerosol optical properties in typical dust-type regions
- Study on the temporal variation of temperature in the Huai River region: a case study of Fuyang City
- Improved measurement of cellular uptake of gold nanorods based on flow cytometry
- Extraction and spatio-temporal distribution of raft aquaculture areas based on U-Net deep learning model
- Study on transmission characteristics of OAM beam in underwater channel
- Research on wavelength selection for UV ozone DIAL
- Test method for the impact of micro-vibration on coastal zone imager
- Adaptive mesh grid scaling algorithm in the simulation of laser propagation
- Study on the ultraviolet polarized radiation characteristics of solid rocket motor plumes
- A super-resolution reconstruction method for hypersonic target flow field
- The impact of chemical non-equilibrium models on the ultraviolet spectral radiation characteristics of shock layers
- Image interpolation methods for division of focal plane polarimeters: a review
- Simulation of light scattering characteristics of smoke particles based on electric field Monte Carlo method
- The status and development proposal of China's comprehensive environmental observation satellites system
- A temperature-free calibration concentration compensation method based on TDLAS technology
- Simple stokes polarimeter based on liquid crystal polarization grating
- Feature extraction and attribute classification of particle light scattering signals based on GRNN and PNN networks
- Identification of aerosol particle properties based on optical polarization measurement
- Design and optimization of microfluidic chip structure based on particle optical sorting method
- Research on near-surface water vapor detection method based on scanning continuous light
- Research on temperature-pressure compensation algorithm for concentration calibration in TDLAS gas detection system
- Modeling and analysis of out-of-field stray radiation of space infrared detection system
- Controllable preparation of SERS substrate based on anodized alumina oxide template
- Atmospheric optical turbulence profile measurement and parametric model validation
- Designing a microfluidic chip driven by laser beam for separation of particulate matter
- An analysis of mechatronics dynamics for active optics deformable reflectors with self-deformation estimation
- Unimorph active optics thin-shell reflectors actuated with distributed electric field
- Optimization design and implementation of eccentric tracking pendulum mirror for satellite-borne laser communication
- On-orbit polarization channels registration of multi-angle polarization imager under satellite backward flight
- Solar-induced fluorescence mapping with high resolution satellite imaging spectrometers
- Calculation approach of bubble scattering properties
- Wavefront correction based on African vulture optimization algorithm
- Calculation of diffraction by a multi-vane baffle based on boundary wave diffraction theory.
- Notes:
- Description based on publisher supplied metadata and other sources.
- ISBN:
- 1-5106-8084-5
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