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Stealth has been the pre-eminent focus in aircraft design for the past 40 years, still being seen as the most essential feature for 6th generation manned and unmanned aircraft.
Tally-Ho believes we have a solution to enemy stealth aircraft.
Instead of spending millions, even billions in R&D for marginal (and rapidly diminishing) improvements in radar, we propose somthing simpler:
Deploy wide-area aerosolised gel-adhesive into the airspace. It subsequently adheres, and radar-reflective content lights up the stealth aircraft like a beacon to fire control radar.
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Many incorrectly assume that stealth aircraft are 'invisible.' In fact, most stealth aircraft can be detected by search radar (low frequency radar) but not by acquisition or fire control radar (high frequency radar.)
Low frequency radars can see that an aircraft is there, but its position cannot be accurately ascertained for interception. Interceptors must be able to know where an aircraft will be a a very specific moment (the moment of warhead detonation,) and over a very small area (area of fragmentation effect) so that enemy aircraft can hit the aircraft within those milliseconds.
Defeating stealth aircraft isn't about detecting something invisible, but establishing a weapons grade lock on something within an uncertain area.
In short, stealth aircraft aren't invisible, radar can figure out that an enemy aircraft is in a certain area of airspace (but not where it is within that airspace.)
The area that the stealth aircraft is certainly in (but can't be accurately tracked within) is called the 'zone of uncertainty.'
So how can we make them trackable?
Unlike ordinary aerial interceptors (such as conventional kinetic air defence missiles) Eotyrannus gel-adhesive effects can be:
1. Distributed over a wide area, through partial aerosolisation.
2. Remain in an area of airspace for an extended period of time (linger time.)
This means we no longer have to worry about a very precise hit at a specific moment, we have a wide-area lingering effect instead.
If dispersed strategically at points within the 'zone of uncertainty,' gel-adhesive obstructive ordnance can (with certainty) position itself within the path of flight of a stealth aircraft. In effect, it's the only way to ensure a stealth aircraft is hit no matter how 'stealthy' it may be, even if the effector is ultimately gel-adhesive, not kinetic fragments.
Once the Eotyrannus gel-adhesive comes into contact, it adheres, and cures in milliseconds (only after coming into contact with an aircraft) into a highly radar reflective material (both in terms of conductivity, and curing as a rough, non-stealthy surface.)
Thus, radar signature is enhanced (with mild, but not insignificant thermal signature enhancement too,) and a weapons grade lock can be achieved, allowing conventional munitions to intercept the aircraft.
We have the solution to nullify stealth effectively, and force either mission or vehicle kill.