This work proves the feasibility of a novel concept of differential absorption lidar based on the Scheimpflug principle. The range-resolved atmospheric backscattering signal of a laser beam is retrieved by employing a tilted linear sensor with a Newtonian telescope, satisfying the Scheimpflug condition. Infinite focus depth is achieved despite employing a large optical aperture. The concept is demonstrated by measuring the range-resolved atmospheric oxygen concentration with a tunable continuous-wave narrow-band laser diode emitting around 761 nm over a path of one kilometer during night time. Laser power requirements for daytime operation are also investigated and validated with single-band atmospheric aerosol measurements by employing a b...
A portable unmanned Mie-scattering Scheimpflug lidar system has been designed and implemented for at...
Differential Absorption Lidar (DIAL) is a powerful laser-based technique for trace gas profiling of ...
A laser transmitter has been developed and incorporated into a micro-pulse differential absorption l...
A molecular laser-radar system, based on the Scheimpflug principle, has been constructed and demonst...
A molecular laser-radar system, based on the Scheimpflug principle, has been constructed and demonst...
This work demonstrates a new approach - Scheimpflug lidar for atmospheric aerosol monitoring. The at...
This thesis describes the design, construction and performance of a differential absorption lidar sy...
In the quest for a better understanding of climate change, greater importance is attached to monitor...
Improved measurements of the atmospheric water vapor distribution are very important for a broad ran...
Improved measurements of the atmospheric water vapor distribution are very important for a broad ran...
A dual-band continuous-wave (CW) light detection and ranging (lidar) system has been developed for p...
We present an efficient fiber source designed for continuous-wave differential absorption light dete...
Lidar techniques, based on the time-of-flight principle, have been widely employed in atmospheric re...
Lidar techniques, based on the time-of-flight principle, have been widely employed in atmospheric re...
We present an efficient fiber source designed for continuous-wave differential absorption light dete...
A portable unmanned Mie-scattering Scheimpflug lidar system has been designed and implemented for at...
Differential Absorption Lidar (DIAL) is a powerful laser-based technique for trace gas profiling of ...
A laser transmitter has been developed and incorporated into a micro-pulse differential absorption l...
A molecular laser-radar system, based on the Scheimpflug principle, has been constructed and demonst...
A molecular laser-radar system, based on the Scheimpflug principle, has been constructed and demonst...
This work demonstrates a new approach - Scheimpflug lidar for atmospheric aerosol monitoring. The at...
This thesis describes the design, construction and performance of a differential absorption lidar sy...
In the quest for a better understanding of climate change, greater importance is attached to monitor...
Improved measurements of the atmospheric water vapor distribution are very important for a broad ran...
Improved measurements of the atmospheric water vapor distribution are very important for a broad ran...
A dual-band continuous-wave (CW) light detection and ranging (lidar) system has been developed for p...
We present an efficient fiber source designed for continuous-wave differential absorption light dete...
Lidar techniques, based on the time-of-flight principle, have been widely employed in atmospheric re...
Lidar techniques, based on the time-of-flight principle, have been widely employed in atmospheric re...
We present an efficient fiber source designed for continuous-wave differential absorption light dete...
A portable unmanned Mie-scattering Scheimpflug lidar system has been designed and implemented for at...
Differential Absorption Lidar (DIAL) is a powerful laser-based technique for trace gas profiling of ...
A laser transmitter has been developed and incorporated into a micro-pulse differential absorption l...