ZPER-(ZeroPointEnergyRectifiers) FePt₃@ZnO MIM Architectures and Magnetic Core with L∥C Tank: fundamentals, materials, design, fabrication, and thermodynamic validation
10/12/2025
2510123294746

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This document presents ZPER — Zero Point Energy Rectifiers, two experimental architectures (ZPER A: MIM FePt₃@ZnO and ZPER B: magnetic core + L∥C tank) designed to rectify non-equilibrium environmental oscillations into a DC signal, with closed power balances and independent verification protocols. With laboratory-grade rigor—physical model, material stacks, fabrication SOPs (ALD/PEEK), metrology (SMU, lock-in, LCR, VSM), FMEA, and a roadmap—the work explores the possibility of harvesting energy from the vacuum under non-equilibrium conditions, via nonlinear mixing and modal selection (LDOS/Q), without violating thermodynamics. In this framework, the term P_vac,eff is treated as an effective, harvestable contribution only when χ_mix(Ω) ≠ 0 (i.e., a real trigger is present), making it explicit that at equilibrium ⟨P_vac,eff⟩ = 0 and there is no perpetual motion.

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work type: technical document · applied physical

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Title ZPER-(ZeroPointEnergyRectifiers) FePt₃@ZnO MIM Architectures and Magnetic Core with L∥C Tank: fundamentals, materials, design, fabrication, and thermodynamic validation
This document presents ZPER — Zero Point Energy Rectifiers, two experimental architectures (ZPER A: MIM FePt₃@ZnO and ZPER B: magnetic core + L∥C tank) designed to rectify non-equilibrium environmental oscillations into a DC signal, with closed power balances and independent verification protocols. With laboratory-grade rigor—physical model, material stacks, fabrication SOPs (ALD/PEEK), metrology (SMU, lock-in, LCR, VSM), FMEA, and a roadmap—the work explores the possibility of harvesting energy from the vacuum under non-equilibrium conditions, via nonlinear mixing and modal selection (LDOS/Q), without violating thermodynamics. In this framework, the term P_vac,eff is treated as an effective, harvestable contribution only when χ_mix(Ω) ≠ 0 (i.e., a real trigger is present), making it explicit that at equilibrium ⟨P_vac,eff⟩ = 0 and there is no perpetual motion.
Work type Technical
Tags work type: technical document · applied physical

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Identifier 2510123294746
Entry date Oct 12, 2025, 1:08 PM UTC
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Author 100.00 %. Holder javier jerez fernández. Date Oct 12, 2025.


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