Documents / Report
This Defense Intelligence Reference Document was prepared by the Defense Intelligence Agency in March 2010 under its Advanced Aerospace Weapon System Applications (AAWSA) Program. It reviews reported injuries to people exposed at close range to anomalous aerospace vehicles and attributes them mainly to electromagnetic radiation field effects, including burns and neurological effects. The document argues that clinical diagnoses could help infer the characteristics of such systems. Its appendices list historical cases and classify reported physiological effects using ICD codes and Vallee ratings.
UNCLASSIFIED/ /F('Jlt err1e1111t "![ ('JIit I
the "hotspot" range which lies between 400 MHz and 2 GHz. The heating is highly
nonuniform with typical ratios between spatial peaks and whole body average specific
absorption rates of the order of 150: 1 to 200: 1.' {above and Figure One adapted from
[ l]}
Figure One
Subresonance Resonance range Hot spot
rang a Whole body ; Pertia range
: body
:lheadl
"' 300 ""'
Surface
11bserption
range
2000 flMHzl
V.z..-.uion uf 11ormaJued specific ilbso,prion rate with frequmcy a11d related abso,pnon
chllracteri.sru:s in livmg organisms: reprod11Ud wirh !he pemri.sswn u/ WHO from:
Elecrromagnet:icfidds (300 Hz w 300 Ghz) 1993:76. (EnvironmeniaJ HeaJih
Cmma 137.)
A. THE EFFECTS THAT BURN
From the perspective of aerospace applications, the millimeter wave length of emitters
has been of greatest interest for human effects, and there have been extensive reviews
documenting effects at both low and high levels of incident energy [20,21]. For our
purposes, the most basic biophysical information that pertains is clear: with dry
clothing, 90-95 % of the energy is efficiently absorbed with or without an air gap acting
as an impedance transformer. These millimeter waves (30-300 GHz) penetrate the skin
to a depth of several millimeters. The ANSI (American National Standards Institute)
safety guideline of 5 mW/cm 2 for RF /NIEMR equates to a SAR of 65-357 W/kg.
The depth of penetration involves the area of cutaneous receptors, and at and above
these levels will be perceived first, as prickling sensation, then pain and finally
erythema and even second degree burns if exposures last on the order of minutes:
burning can occur in a non-linear dose-effect range above these SAR levels, as
described elsewhere in this paper.
The threshold of heat perception is near 0.7 mW/cm 2 , with power densities of about 9.0
mW/cm 2 causing sensations of pain within one second of exposure. It is notable, that
the non-liner effects apply; e.g. for 3 GHz {decimeter, not millimeter wave lengths},
the thresholds are on the order of 30 times less. Indeed, especially in the Former Soviet
Union, there is substantial literature on these wavelengths at SARs below 10s of W/kg
(as with Diathermy Machines in the US in the '50s) being exploited for a wide range of
external and internal (gastrointestinal) therapies.
Of interest here, in the context of incident RF that can produce heating injury, are a
series of very early experiments done at Brooks Air Force Base and the Oak Ridge
National Laboratories during the Cold War era intended to study potential weapons and
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UNCLASSIFIED/ ,'f811. 8ffiliiliR.k I.Iii O•lk¥ Report, from the dia collection. The PDF is mirrored here; the original link is above. 38 pages are in the text index: search them above, or from the library's search.