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Updated: May 5, 2026

Generation and Coherent Control of Pulsed Quantum Frequency Combs
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Angelo Bassi1, Detlef Dürr, Günter Hinrichs

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Summary

This study identifies the most general class of continuous wave function evolutions, exploring nonlinear modifications to quantum mechanics to resolve paradoxes like Schrödinger

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Area of Science:

  • Quantum Mechanics
  • Foundations of Physics

Background:

  • Quantum mechanics' linearity leads to paradoxes such as Schrödinger's cat.
  • Nonlinear modifications of the Schrödinger equation are proposed as a solution.
  • The uniqueness and general class of these nonlinear models remain an open question.

Purpose of the Study:

  • To identify the most general class of continuous wave function evolutions.
  • To explore nonlinear modifications of quantum mechanics compatible with physical requirements.
  • To investigate models of spontaneous wave function collapse.

Main Methods:

  • Analysis of nonlinear modifications to the Schrödinger equation.
  • Identification of continuous wave function evolutions.
  • Application of the no-faster-than-light signaling constraint.

Main Results:

  • The most general class of continuous wave function evolutions is identified.
  • This class represents nonlinear modifications to quantum mechanics.
  • The findings are constrained by the no-faster-than-light signaling principle.

Conclusions:

  • The study provides a comprehensive framework for nonlinear quantum mechanics.
  • It addresses the uniqueness of spontaneous wave function collapse models.
  • The identified class of evolutions offers a path towards resolving foundational quantum paradoxes.