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Defense Intelligence Reference Document State Of The Art And Evolution Of High-Energy Laser Weapons

Defense Intelligence Agency · 31 pages · text from the file's own layer

The Defense Intelligence Agency produced this reference document, dated 31 March 2010, under its Advanced Aerospace Weapon System Applications (AAWSA) Program. It reviews the state of the art and likely evolution of high-energy laser weapons, including chemical, solid-state, fiber and free-electron lasers, as well as beam control and the history of DoD laser research. It concludes that electrically powered lasers could make megawatt-class weapons practical and that spacecraft laser weapons are conceivable within 20 years. It also recommends ways to protect spacecraft from laser damage.

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High Power Laser
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Figure 2. Elements of an HEL Weapon System
Laser Devices
LASER FUNDAMENTALS
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Propagation
Atmospheric,
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The term "Laser" is an acronym for Light Amplification by Stimulated Emission of
Radiation. It is a unique device that employs the quantum states of matter to store
and convert energy into electromagnetic radiation. The resulting radiation is referred to
as "coherent," meaning it is single wavelength or "monochromatic" and highly focusable
due to its well controlled phase. In its simplest form, any laser device can be viewed as
an "energy-conversion" box with one input and two outputs. The input is energy, which
can take a variety of forms (electricity, light, or a chemical reaction) depending on the
specific laser, while the two outputs are a coherent beam and heat (Figure 3). Since
the overall energy-conversion lasing process is considerably less than 100 percent
efficient, significant waste heat is generated which must be removed from the laser.
Inside the laser is a "gain-medium" which stores a fraction of the input energy in its
atoms or molecules and then releases the energy at the laser's selected wavelength.
The laser also contains "resonator" mirrors which repeatedly relay the beam back and
forth through the gain medium to increase its energy level. The laser device functions
as the optical equivalent of an electrical oscillator with the resonator optics providing
the feedback. Different lasers, which use various materials as their gain medium, emit
radiation at wavelengths ranging from the infrared through the visible spectrum and
into the ultraviolet.
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 31 pages are in the text index: search them above, or from the library's search.