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don’t know about that.

 

I still don’t ascribe to a singular religious doctrine, but knowing what I know now… well, let’s just say the title of atheist would be a little disingenuous. Staking my flag in that camp would contradict all the principals of which my life has been founded upon. Try as I may, I cannot in good faith deny or refute what I myself witnessed. Calling whatever we discovered ‘god’ may in time prove a bit inaccurate, but there is no denying it, we found something.

 

Science has at times become this sort of monolithic and infallible institution. One that suffers from the ostracization of fringe concepts that fail to breach the egotistic blockade. It is all too often wielded as a trump card to negate all that doesn’t assimilate to the prevailing narrative. Too often outlandish claims are torn asunder because no metrics exist to properly digest them.

For all the good it has brought, science is not and will not ever be an absolute. Nothing is. Absence of proof, is not proof of absence. And what happened out there, in that lab deep below the streets of Stockholm, now stands as a testament in my life, to all the ventures humanity has yet to embark upon. It serves as an anchor, and if ever I find myself drifting away into the blissful seas of cognitive dissonance, it is there to remind me how small and naïve I truly am.

I graduated from UCLA with a Bachelor’s in physics, and an incredible opportunity landed in my lap. One of my professors had put in a good word for me with a lab out of Stockholm. I was contacted and offered an internship. One of dozens to be extended the opportunity. I accepted the offer without a moment’s hesitation.

 

From there I uprooted my Californian lifestyle to move halfway around the world to the frigid north of Sweden. I was not prepared for the cold. Most of my summers were spent in a bikini, frolicking on the sandy beaches of Santa Monica and lounging in the sun. Sweden might as well have been another planet. Temperatures would plummet to a bone-chilling negative 30 in the winter. Lucky for me though, I had a marvelous host family who helped me acclimate myself and integrate into Valhalla.

I was brought on to the team and slowly began the arduous process of melding into the group. They were all incredibly kind and welcoming, but still the feeling of being woefully outclassed by my colleagues was thick as tar pitch. The project consisted of over fifty men and women, all of them among the best the world had to offer. They hailed from Germany, Japan, Poland, Hong Kong, South Korea and many other sovereign states. It was a melting pot of some of the greatest minds I’d ever met. Seeing them in their element and marveling at the way their minds hurdled asinine topics to delve straight to the cortex was altogether incredible, and more than a little intimidating.

The expressed goal of the coalition was to study the behaviors of quarks, protons, and other particles in the subatomic realm to further decode the complex world of theoretic energy matrices. By extension, the group also allotted resources to develop tools for observing and decoding quantum entanglement and string theory. These principles were still in their infancy at the time, and none of us could have ever imagined the enormous magnitude of the things that were to come.

 

The lab had its very own particle accelerator, which I myself pretty much obsessed over from day one. Most of the concrete data however, was relayed from the lab in Geneva, home of the large hadron collider. I even got to see the magnificent machine in person on a few occasions.

 

One thing that has always staggered me, is the amount of incredible achievements capable when pursuit of knowledge guides the way. However, the complete polar opposite is also true, as curiosity without empathy all too often yields crimes against humanity.

As you may already know, the large hadron collider was the first machine capable of synthesizing the particle known as the Higgs-Boson. The machine is a particle accelerator built in a 27-kilometer loop. It uses a state of perpetual vacuum and temperature colder than that of outer space to accelerate particles to 99 percent the speed of light. These particles collide with one another, creating spectacular outbursts of radiation and results which are believed to be similar to that of the big bang on a much smaller scale. It is also through this process that the infamous Higgs-Boson can be synthesized.

Some call it the ‘God Particle’, but many physicists are not fond of the omnipotent moniker. It is in a way suitable though, as it is ubiquitous and can spontaneously manifest or dematerialize through processes which are not yet entirely understood. It is a sort of bridge between matter and antimatter. The entity that binds the ethereal with the corporeal. It is the place between light and dark, hard to define, as once light ends, shadow begins, and vice versa. The exact moment of intersection is difficult to pinpoint, but there is a definitive moment, and that moment is the Higgs-Boson.

It was once thought that matter could only exist in one place at a time, however the particle slit test of our progenitors proved otherwise. A particle accelerator was used to eject electrons between one of two microscopic slits. They naturally assumed the electrons would pass through either slit A or slit B, and when directly observed, their premise was corroborated.

However, when an imprint background was installed to bypass direct observation, they noticed a peculiar detail. The electrons produced what is known as a wave, or interference pattern on the imprint like ripples in a pond. This meant that the electrons were interfering with themselves while simultaneously passing through both and neither of the slits. It was at first thought to be a false-negative and outright impossibility, but thousands of repeated experiments all reached the same conclusion. There was no denying it anymore. Matter can exist in more than one place at a time, and reality is altered simply by perceiving it.

The world of particle physics is a strange one, and one which we have only just begun to glimpse the majesty of. At times it may even require us to suspend our own limited human understanding of things, to contemplate things beyond our minds comprehension. It was this idea which was the tabernacle of all the group was trying to achieve. To unravel the mysteries of the subatomic universe, and better understand reality itself.

 

The group was funded magnificently, and state of the art equipment was provided from lavish donors from all around the world. My contemporaries and I began to study the processes again from square one. This consisted primarily of monitoring the nature of particles and testing the same process over and over ad nauseum. Progress was slow, and many failures were soon under our belts, but you can’t build a house without chopping down a few trees.

 

It took years to decode part of the formula, but eventually we learned that the behavior of these particles could be predicted under certain pretenses. They could also; to a certain extent, be directed. Programmed to inhabit separate locations at the same time, giving them the perceived ability to exist in two places at once. In reality though, it was more akin to a transfer of locale via microscopic slits in the Higgs-Boson. We realized it was not a matter of travelling to, but instead travelling through. Through the fabric of space itself.

With electrical stimuli and coordinate based geo-synchronization, one could manipulate these particles to transfer locations faster than the blink of an eye. The machine used was primitive compared to later iterations, but its true potential was not lost on us for a moment.

Time went on, and the technique was further refined, most readily in the distance were particles able to be transposed. It started as only a few nanometers, but eventually we could transfer particles several feet.

It was through this process, that blueprints for an entirely new type of machine were first devised. It was to be a machine unlike any before it. Instead of electrical stimuli sent through circuits and wires, it was transferred directly from one location to another. Wireless energy transposed through space. This greatly improved computing capabilities and allowed the machine to act and calculate much quicker than anything ever seen before.

Initial ideals for the machine were skeptical at best, but as time went on, the real significance of its potential became apparent. When combined with a suitable processor and digital interface, it soon began decoding encryption and translating mathematic ciphers in a fraction of the time of anything seen before it. It didn’t stop there, though.

With a binary converter, it wasn’t long before human physiology itself was soon able to be deciphered and converted into convenient little anagrams and simplistic formulas. This soon gave the machine the ability to replicate human tissue and organs from fetal stem cells. When given raw biomass, it could manufacture a duplicate heart or lung. One which was genetically indistinguishable from that of the donor’s DNA.

On one occasion, the machine even managed to regrow the arm of an amputee war veteran. Most of us thought it couldn’t possibly work, that the nerve endings on the man’s arms would be unable to be resuscitated after so long. But after seventeen hours in surgery, when I saw the vet move his new fingers for the first time after transplant and cell resuscitation, I knew we had discovered something special.

Diseases became able to be observed on a molecular level and eradicated before gestation. A virus or bacterial strain could be genetically reprogrammed to attack and destroy itself rather than the host. HPV, AIDS, the black death, the common cold, strep throat, gonorrhea – none of them stood a snowball’s chance in hell against the unrivaled power of the machine.

It could even reprogram human DNA to desired proportions, eliminating extra chromosomes and restoring neural pathways to reverse entropic cognitive illness like Dementia and Parkinson’s. Even pre-birth conditions like cerebral palsy and microcephaly were in the process of being all but eradicated.

It wasn’t just organic material either. The machine could take a block of carbon and alter its isotopes to create carbon-14 and elicit radioactivity. This proved interesting for further power possibilities as the machine demonstrated potential for creating its own fuel source, but there was another more pertinent discovery.

By changing the number of protons or neutrons in the atomic nucleus, the given element’s atomic weight was altered, thereby turning it into another element altogether. The machine held the power to change the very building blocks of the universe itself. It could turn copper into gold, bromine into iodine.

I think it was then that we first realized the scope of what it was that we had created. The applications for the machine seemed endless. It could write books, clone living organisms, and alter the very elements beneath our feet. It was the philosopher’s stone, the holy grail, and the all-seeing eye in one convenient little package. The Deus ex Machina. The world’s very first quantum computer was born.

One important distinction I would like to make, despite the rumors; the quantum computer was not in fact an AI. It had computing power which was eons beyond that of a normal computer, and the ability to perform almost any task given to it, provided the necessary accommodations were implemented. For this reason, it was not allowed to make decisions for itself. Many in the group were justifiably nervous at the prospect of an artificial intelligence somehow gaining sentience and going rampant with the power of quantum manipulation.

We really had no idea where our experimentation would lead us, and so the decision was made early on, to prevent it from thinking on its own and going all Skynet on us. The computer was a beast of burden, happily doing any task

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