Open Access Open Access  Restricted Access Subscription Access
Open Access Open Access Open Access  Restricted Access Restricted Access Subscription Access

Free Space White Laser Beam Communication on Mars with High Magnetic Field Portal Design


     

   Subscribe/Renew Journal


An initial hurdle faced by early means of laser communication was the enormous heat generated by pumped laser action. However, in the late 1960's, Semiconductor laser was developed and ever since, the possibilities for laser communication have grown. Though developed for carriers, new laser technology of Free Space White Laser Beam communication is used for communication between Mars and Earth through satellite. In this information age, the demand for high speed, high bandwidth communications channel, is ever increasing. FSWLB is presented as a solution to these demands in that it is free to implement, easy to install and of very high bandwidth. Experimental results show the performance of the completed system and offer methods of maximizing efficiency of such FSWLB-based communication systems. To accelerate and guide the Laser beam propagation through free space high magnetic field deployed in Portal design Process.

Keywords

e-Electron, FSLB-Free Space Laser Beam, IMJ-Inter Mediate Junction.
User
Subscription Login to verify subscription
Notifications
Font Size

Abstract Views: 185

PDF Views: 2




  • Free Space White Laser Beam Communication on Mars with High Magnetic Field Portal Design

Abstract Views: 185  |  PDF Views: 2

Authors

Abstract


An initial hurdle faced by early means of laser communication was the enormous heat generated by pumped laser action. However, in the late 1960's, Semiconductor laser was developed and ever since, the possibilities for laser communication have grown. Though developed for carriers, new laser technology of Free Space White Laser Beam communication is used for communication between Mars and Earth through satellite. In this information age, the demand for high speed, high bandwidth communications channel, is ever increasing. FSWLB is presented as a solution to these demands in that it is free to implement, easy to install and of very high bandwidth. Experimental results show the performance of the completed system and offer methods of maximizing efficiency of such FSWLB-based communication systems. To accelerate and guide the Laser beam propagation through free space high magnetic field deployed in Portal design Process.

Keywords


e-Electron, FSLB-Free Space Laser Beam, IMJ-Inter Mediate Junction.