Volume 2 | Issue 8 | August 2022

Cosmology of Light Newsletter

Hello Friends,


On August 25 I presented a keynote at TechHR-Singapore, Asia's largest HR & Work Tech Conference. I spoke shortly after Daniel Kahneman, Economic Sciences Nobel Laureate, and for the first time publicly projected QIQuantum - my vision of quantum computation - on a global stage. 


In this brief 20-minute keynote my primary goals were to summarize the essential difference between existing pursuits of quantum computation and that embodied by QIQuantum, to suggest some representative applications based on the latter, and to indicate how these could be achieved in a shorter time-frame and at a much lower price-point than approaches currently being pursued by existing industry leaders such as Google, IBM, Intel, amongst others.


In this newsletter i will briefly draw attention to each of these areas, and conclude by offering a link to the original talk.


Best Wishes,

Pravir

Components of Light-Based Quantum Computation

Essentially there are three components to QIQuantum's approach to light-based quantum-computation:


  1. Quanta are conceived as a bridge-mechanism precipitating some of the infinite information that exists in the quantum field operating at the boundary of material manifestation, into the 'stable' material layer created by light traveling at a constant speed of 'c'.
  2. Insight into the dynamics of what is happening at the quantum-level is provided by a process of 'reverse extrapolation' where the essential and visible fourfold architecture of life and matter are seen to originate at quantum levels.
  3. Genetic information that is instrumental in dictating operational realities at the level of living cells, is seen to have counterparts of genetic-type information at each preceding layer of matter and life, and further, is seen to be the essential output of a persistent quantum computation occurring from moment to moment.


These components arise naturally in a cohesive light-based mathematics - which I have articulated in a series of 10-books and briefly represent in the accompanying graphic - and is created in contrast to the facile, primarily statistical-probabilistic quantum-level mathematics that currently drives the development of quantum computers by the likes of IBM, Google, Intel, Microsoft, and Amazon, amongst others.

Representative Applications & Industry Impact

Representative applications - based on a non-provisional patent i filed on Feb 21, 2022 that allows the creation of nano-sized quantum computational devices, aka nano-cyborgs - will exist in the areas of medical technology, material sciences, and genetics.


It will be possible, through an appropriately designed nano-cyborg, to superpose the functioning of a healthy cell onto an unhealthy cell, or further, to change the balance of the fourfold molecular plans existing in a cell so that health can be generated from within.


In the field of material sciences, since all manifestation of matter - regardless of scale - is accompanied or perhaps even driven by specific function specified by fourfold space-time-energy-gravity coordinates as envisioned in the light-based mathematics, it will be possible to create different kinds of function-based materials leveraging the right combination of nano-cyborgs.


Further, since applications in genetics, medical technology, and material sciences are upstream applications, there will be a huge impact on a vast number of downstream industries including manufacturing, transportation, construction, healthcare, amongst many others.

Development Time and Costs

QIQuantum developmental efforts will be based on components that remain stable at room temperature - photons, specific atoms and molecules; will leverage proven quantum dynamics such as exist in LED, MRI, GPS, and LASER; and will be built using unique gate structures etched into some silicon-like substrate, as specified by the already filed non-provisional patent.


As a result the developmental time and costs will be relatively low and allow for an emergent-strategy pursuing more and more of the mathematical possibilities as laid out in the ten-book Cosmology of Light series (link below). 


Such emergent-strategy, while creating a number of useful devices on the way, will also result in a quantum computer of an entirely different genre than today's digital computers, and the conceived qubit-based computers being developed by existing industry stalwarts. 


The QIQuantum-type emergent-computer, as I have suggested in numerous talks and writings, will be essentially creative, as opposed to constructive.

TechHR-SG Keynote: Harnessing Light-Based Emerging Possibilities for the New Possible

The 20-minute keynote delivered on August 25, 2022, summarizing QIQuantum's approach and vision can be accessed to the right.


 

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