Time evolution of an entangled state

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SUMMARY

The discussion centers on the time evolution of entangled states in quantum mechanics, specifically how these states evolve according to the Schrödinger equation. Participants emphasize the necessity of utilizing the total wave function of the particles involved to determine the state at any arbitrary time 't'. This approach is critical for accurately modeling the dynamics of entangled systems.

PREREQUISITES
  • Understanding of quantum mechanics principles
  • Familiarity with the Schrödinger equation
  • Knowledge of wave functions and their properties
  • Concept of quantum entanglement
NEXT STEPS
  • Study the implications of the Schrödinger equation on entangled states
  • Research methods for calculating wave functions over time
  • Explore advanced topics in quantum mechanics, such as decoherence
  • Investigate applications of entangled states in quantum computing
USEFUL FOR

Quantum physicists, students of quantum mechanics, and researchers exploring the dynamics of entangled quantum systems.

menriquezf
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How does a entangled state evolve in the time?? How can i get the state for 't' arbitrary??
 
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I believe the state still evolves according to the Schrödinger equation. You just have to use the total wave function of the particles.
 

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