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  • Light Quantization with Classical Fields in Strong Laser 

    Nieto-Chaupis, Huber (IEEE, 2025-04-21)
    Acceso restringido
    In this paper is demonstrated that quantum ef-fects can be derived in a straightforward manner from the classical radiation intensity equation. To accomplish this, it is employed the equation done by Hartemann and Kerman ...
  • Hamiltonian-based Quantum Paths Guided by Engineered Perceptron 

    Nieto-Chaupis, Huber (IEEE, 2025-04-21)
    Acceso restringido
    The case of a massive particle traveling along the space-plane but guided by an algorithm based at perceptron, is presented. Essentially, it is defined the corresponding Hamiltonian that in a first instance turns out to ...
  • Global Inflation Data Modeled by Commutative and Non-Commutative Algebra 

    Nieto-Chaupis, Huber (IEEE, 2025-04-21)
    Acceso restringido
    According the global data, global inflation data has exhibited ups and downs along a period of 20 years. One can wonder if the whole dataset can be merely represented by mathematical operations. In this paper, such operations ...
  • Artificial Derivation of Schrödinger Equation Driven by Artificial Neural Networks 

    Nieto-Chaupis, Huber (IEEE, 2025-04-21)
    Acceso restringido
    Starting from the idea that artificial intelligent might be able to derive known as well as unknown equations of physics and other different branches of basic science, the concept of perceptron was used to derive the the ...
  • Bayesian Synapse Driven by Quantum Hamiltonian and Electrical Interactions 

    Nieto-Chaupis, Huber (IEEE, 2025-04-21)
    Acceso restringido
    A probabilistic model of Synapse is proposed. In concrete, synapse is proposed as a Bayesian probability that requires the quantum probabilities for both: the interaction of Calcium 2+ in axon area, and the releasing of ...

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