Rajappa Papannareddy has written: 'Introduction to lightwave communication systems' -- subject(s): Laser communication systems, Fiber optics, Optical communications
Leonid G. Kazovsky has written: 'Broadband optical access networks' -- subject(s): TECHNOLOGY & ENGINEERING / Telecommunications, Optical communications 'Transmission of information in the optical waveband' -- subject(s): Laser communication systems, Data transmission systems
S. L. Palfrey has written: 'Monolithic narrow-linewidth InGaAsP semiconductor laser for coherent optical communications' -- subject(s): Semiconductor lasers, Laser communication systems
Laser polarization can affect the efficiency of optical communication systems by influencing the transmission and reception of light signals. When the polarization of the laser light aligns with the optical components in the system, it can enhance signal strength and reduce signal loss, leading to improved efficiency. Conversely, misalignment of polarization can result in signal degradation and decreased efficiency in the communication system.
LASER application in optical communication
space .optical
The relationship between laser bandwidth and the efficiency of data transmission in optical communication systems is that a higher laser bandwidth allows for more data to be transmitted at a faster rate. This is because a wider bandwidth enables the laser to carry more information in the form of light signals, leading to increased data transmission efficiency.
A laser link is an optical communication technology which uses light moving around in free space to transmit data for telecommunications or computer networking. This technology is quite useful rather than utilizing traditional optical fiber cables and transmission lines which constitute more "physical" uses of channels. Examples of laser link use is in spacecraft and satellite which send signals to earth and throughout space.
Laser light is transmitted through specialized optical components such as lenses, mirrors, and fibers. These components are designed to control and guide the direction of the laser beam while maintaining its intensity and coherence. Lasers can also be transmitted wirelessly through the air in free-space communication systems.
An electro-optical system involves the integration of electronics and optics to manipulate and control light for various applications. This system uses electrical signals to modulate and transmit light to achieve functions such as sensing, imaging, and communication. Examples include laser systems, digital cameras, and optical sensors.
For cutting, security systems, gunsights, sky writing, communications, accurate measurement,
Robert J. Allen has written: 'NASA three-laser airborne differential absorption lidar system electronics' -- subject(s): Astronautics, Lasers, Optical communication systems