Journal of Quantum Information Science

Volume 4, Issue 1 (March 2014)

ISSN Print: 2162-5751   ISSN Online: 2162-576X

Google-based Impact Factor: 0.95  Citations  

Virtual Numbers to Represent Entangled Quantum States

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DOI: 10.4236/jqis.2014.41002    4,877 Downloads   6,882 Views  
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ABSTRACT

In the existing formalism of quantum states, probability amplitudes of quantum states are complex numbers. A composition of entangled quantum states, such as a Bell state, cannot be decomposed into its constituent quantum states, implying that quantum states lose their identities when they get entangled. This is contrary to the observation that a composition of entangled quantum states decays back to its constituent quantum states. To eliminate this discrepancy, this paper introduces a new type of numbers, called virtual numbers, which produce zero upon multiplication with complex numbers. In the proposed formalism of quantum states, probability amplitudes of quantum states are general numbers made of complex and virtual numbers. A composition of entangled quantum states, such as a Bell state, can then be decomposed into its constituent quantum states, implying that quantum states retain their identities when they get entangled.

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Patel, L. (2014) Virtual Numbers to Represent Entangled Quantum States. Journal of Quantum Information Science, 4, 18-21. doi: 10.4236/jqis.2014.41002.

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