This work develops a phenomenological framework to test measurable force effects in high-field electromagnetic systems, suggesting new experimental pathways.
Key Points
The research aims to test whether high-field electromagnetic systems can exhibit force effects outside known mechanisms.
Developed a constrained phenomenological framework for testing asymmetric electromagnetic systems.
Presented resonant cavity configurations with scaling relations for effective force magnitude based on field strength and system geometry.
Introduced a test protocol to differentiate nonstandard signals from established effects.
Null results impose constraints on effective coupling parameters, reducing the parameter space for nonstandard behavior.
Identified ranges that align with sensitivity limits of existing force measurement techniques.
Both positive detections and null results yield significant physical insights.