Artificial intelligence autonomous learning system and method based on quantum principle
A technology of artificial intelligence and self-learning, applied in the intersection of artificial intelligence and quantum mechanics, it can solve the problems of users losing the fun of communication and leaking secrets, and achieve the effect of flexible and changeable behavior and guarantee of confidentiality.
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Embodiment 1
[0052] Such as figure 2 As shown, the state generating device includes a particle emitter and a particle distributor. The particle emitter is used to emit a single microscopic particle; the particle distributor has several through holes, and the emitted single microscopic particle passes through one of the through holes. The state detector is a particle detector, the number is the same as the number of through holes, and it is set close to the through hole to detect the particle signal emitted close to the through hole, and send the detection result to the controller; the type of actuator action and the number of particle detectors The same and one-to-one correspondence, after receiving the signal from the controller, execute the action. The controller adjusts the relative angle of the particle emitter and the particle distributor according to the feedback signal of the external detector.
[0053] Particle emitters are laser emitters that emit individual photons. The main p...
Embodiment 2
[0065] Such as image 3 As shown, the state generating device includes a laser emitter, which is used to emit a beam of a set wavelength within a set time, and use the beam to excite the atoms in the ground state. The state detector is a timing detector, which is used to detect whether there are photons emitted within a set time, so as to judge whether the energy level of the excited state atom has moved back, and send the detection result to the controller. The actuator performs actions after receiving the signal from the controller. The controller adjusts the relative time between the light emitted by the laser emitter and the measurement by the timing detector according to the feedback signal from the external detector.
[0066] In the light beam emitted by the laser transmitter, when a large number of photons irradiate the atoms in the ground state, their electron orbits can transition to the excited state. For example, in a hydrogen atom, the energy difference between t...
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