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A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
Published on: September 5, 2019
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Observations on entanglement, non-locality and ultra-high dilutions
1Faculty of Science, University of Technology, P.O. Box 123, Ultimo, Sydney, NSW 2007, Australia.
Homeopathy : the Journal of the Faculty of Homeopathy
|December 19, 2015
Summary
Research into ultra-high dilutions (UHD) has seen declining activity and recognition. New physics concepts like entanglement may offer avenues for future theoretical models in UHD research.
Area of Science:
- Explores the intersection of physics and ultra-high dilutions (UHD).
- Focuses on fundamental research in UHD and its applications.
Background:
- The field of ultra-high dilutions (UHD) has evolved significantly since 1994.
- New physics concepts like entanglement and non-locality are influencing UHD research.
- Many UHD practitioners lack a physics background, necessitating clearer explanations.
Purpose of the Study:
- To elucidate concepts of entanglement and non-locality for UHD research.
- To make recent theoretical concepts accessible to a wider audience.
- To analyze trends in fundamental research activity in UHD.
Main Methods:
- A selected study of fundamental research activity in UHD was performed.
- Analysis focused on identifying trends in development and recognition.
- Theoretical concepts were synthesized for broader accessibility.
Main Results:
- Fundamental research in UHD experienced a peak in activity and recognition around the millennium.
- Research output and recognition have sharply declined in the last decade.
- A period of reflection and consolidation may be underway in the field.
Conclusions:
- Further development of theoretical models in UHD is suggested.
- There is a need to stocktake current knowledge on UHD's fundamental workings.
- Developing models with measurable predictors beyond metaphorical descriptions is recommended.

