# Quantum Physics From Abstract to Laboratory Space I. Q-States Sustained by Partite Material Systems: Linking A+B and AxB domains via Entanglement

@article{Tapia2017QuantumPF, title={Quantum Physics From Abstract to Laboratory Space I. Q-States Sustained by Partite Material Systems: Linking A+B and AxB domains via Entanglement}, author={Orlando Tapia}, journal={arXiv: Quantum Physics}, year={2017} }

The paper focuses on aspects of the measurement problem introducing quantum states (q-states) for measured and measuring systems. The link between non-interacting and interacting quantum systems is first look at. For two independent partite systems logical sums A+B stand for non-interacting q-systems; while a direct product space AxB gathers interacting states. However this latter should support physical q-states with base states that do not separately belong to either A nor B; the latter… Expand

#### One Citation

q-Measurement Scheme set in Quantum Photonic Frameworks: Linking Abstract Space and Lab Spaces

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Beginning in abstract space and dislodging the representational form paves a way to formulate a version of a quantum physical measurement scheme. With materiality playing sustainment roles with… Expand

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