Moore’s Law on ZPE capture devices.

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Moore’s Law on ZPE capture devices.

I wonder if Moore’s Law applies on ZPE capture devices?

Casimir cavity “batteries” could have similar or even faster scaling potential, even though the principles of scaling or power increase are fundamentally different.

Reference to the technologies ..

https://old.rip/zpe/

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Prompt to LLM:

I wonder if Moore’s Law applies on ZPE capture devices — is it applicable to Casimir cavity “batteries” produced by the research team of Garret Moddel and another research team of Harold “Sonny” White. Can the law be similar like advancement in electonics also on ZPE harnessing devices?

AI/LLM response:

Moore’s Law, originally describing the doubling every two years of transistor count and density in integrated circuits, does not directly apply to zero-point energy (ZPE) capture devices such as Casimir cavity “batteries” developed by Garret Moddel and Harold “Sonny” White’s teams.

Here is why:

  • Moore’s Law concerns semiconductor technology: It specifically describes scaling of transistor density, size, speed, and cost in electronics, based on lithographic miniaturization and fabrication improvements in silicon-based chips[1][3][5].
  • ZPE capture devices are fundamentally different: The Casimir cavity devices rely on quantum vacuum fluctuations and the Casimir effect to extract energy, a physical principle unrelated to transistor density or semiconductor fabrication scaling[2][6]. The devices produce power by breaking equilibrium of zero-point electromagnetic modes inside nano-scale optical cavities, not by transistor miniaturization.
  • No observed exponential doubling analogous to Moore’s Law is reported for ZPE devices as of now. Moddel’s research shows successful extraction of power at small scales (~70 W/m² power density in small devices), but there is no evidence or claim that their energy capture capacity doubles systematically at fixed time intervals comparable to Moore’s Law[2][6].
  • Moore’s Law-like exponential growth requires manufacturing and technology scaling principles that are mature and reproducible (like lithography improvements in electronics), whereas ZPE energy harvesting is still experimental and controversial, with open questions about thermodynamics and physical limits[2][4][8].
  • Improvement in ZPE devices may depend on advances in nanofabrication or new physics discoveries, but this would not necessarily follow the same exponential trajectory or metrics as electronics scaling. It could have different physical constraints and engineering challenges.

In summary, while both fields are at the nanoscale, Moore’s Law is a technological scaling observation about electronics manufacturing, not a physical law applicable to quantum vacuum energy capture devices. The progress in ZPE harvesting may have its own growth metrics but is not currently known to follow a Moore’s Law-like exponential trend[1][2][3][6].

If ZPE energy technology matures, it might exhibit its own unique progress curve, but as of now, no Moore’s Law analogue is established in Casimir cavity or zero-point energy devices.

Citations:
[1] Moore’s law https://en.wikipedia.org/wiki/Moore’s_law
[2] Unlocking Zero-Point Energy | Garret Moddel https://www.youtube.com/watch?v=ddi87KVwJYM
[3] Analysis of Moore‟s Law and its Applicability in the Future https://www.erpublications.com/uploaded_files/download/akaash-sai-sagi_BQTMX.pdf
[4] Garret Moddel | Extracting Zero-Point Energy: Does it Violate the Second Law? https://www.youtube.com/watch?v=z6_KKXTbTyg
[5] SAVING THE FUTURE OF MOORE’S LAW https://learning.dell.com/content/dam/dell-emc/documents/en-us/2019KS_Yellin-Saving_The_Future_of_Moores_Law.pdf
[6] Garret MODDEL http://rexresearch.com/ModdelZPESuperCapacitor/ModdellZPE.html
[7] Moore’s Law: Toward SW-Defined Hardware https://semiengineering.com/moores-law-toward-software-defined-hardware/
[8] ModdelEuroSSE09.doc https://www.colorado.edu/faculty/moddel/media/64
[9] Moore’s Law – an overview https://www.sciencedirect.com/topics/computer-science/moores-law
[10] Physicists Extend Moore’s Law For Tiny Devices – Slashdot https://science.slashdot.org/story/08/07/18/1636205/physicists-extend-moores-law-for-tiny-devices

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