Parallel Universes and the Many-Worlds Theory

JasonImageAre you unique? In your perception of the world, the answer is simple: you are different than every other person on this planet. But, the answer could be more complicated. There might be another “you” with the same hair, eyes, nose, and ears in another alternate reality. That person, however, may also have a completely different personality shaped by varying outcomes to the same experiences. In fact, those outcomes can be so distinct that you might not even be alive in another world. This concept of multiple realities, or parallel universes, challenges what we know about the world and ourselves.

The origin of the parallel universe conjecture is closely connected with quantum mechanics in the early 1900s. Quantum mechanics, a branch of physics that studies the infinitesimal world, predicts the behavior of nanoscopic objects. Physicists had difficulties fitting a mathematical model to the behavior of quantum matter because some exhibited signs of both particle-like and wave-like movements. For example, the photon, a tiny bundle of light, can travel vertically up and down while moving horizontally forward or backward [1]. Such behavior starkly contrasts with that of objects visible to the naked eye; everything we see moves like either a wave or a particle. This theory of matter duality has been called the Heisenberg Uncertainty Principle (HUP), which states that the act of observation disturbs quantities like momentum and position [2]. In relation to quantum mechanics, this observer effect can impact the form – particle or wave – of quantum objects during measurements. Future quantum theories, like Niels Bohr’s Copenhagen interpretation, use HUP to state that an observed object does not retain its dual nature and can only behave in one state.[3].

In 1954, a young student at Princeton University named Hugh Everett proposed a radical supposition that differed from the popular models of quantum mechanics. Everett did not believe that observation causes quantum matter to stop behaving in multiple forms. Instead, he argued that observation of quantum matter creates a split in the universe. In other words, the universe makes copies of itself to account for all the possibilities and these duplicates will proceed independently. Every time a photon is measured, for instance, a scientist in one universe will analyze it in wave form and the same scientist in another universe will analyze it in particle form. Each of these universes offers a unique and independent reality that coexists with other parallel universes [4].

If Everett’s Many-Worlds Theory (MWT) is true, it holds many ramifications that completely transform our perceptions on life. Any action that has more than one possible result produces a split in the universe. Thus, there are an infinite number of parallel universes and infinite copies of each person. These copies have identical facial and body features, but do not have identical personalities (one may be aggressive and another may be passive) because each one experiences a separate outcome. The infinite number of alternate realities also suggests that nobody can achieve unique accomplishments. Every person – or some version of that person in a parallel universe – has done or will do everything [5].

Moreover, the MWT implies that everybody is immortal. Old age will no longer be a surefire killer, as some alternate realities could be so scientifically and technologically advanced that they have developed an anti-aging medicine. If you do die in one world, another version of you in another world will survive [6]. The most troubling implication of parallel universes is that your perception of the world is never real. Our “reality” at an exact moment in one parallel universe will be completely unlike that of another world; it is only a tiny figment of an infinite and absolute truth. You might believe you are reading now, but there are many copies of you that are not reading. In fact, you are even the author of this article in some distant reality. Thus, do winning prizes and making decisions matter if we might lose those awards and make different choices? Is living important if we might actually be dead somewhere else [7]?

Everett’s Many-World’s Theory might sound so bizarre and unrealistic that it should be in science fiction movies and not in real life. However, there is no experiment that irrefutably discredits the validity of MWT. Hans Moravec, an Austrian mathematician, developed one thought experiment called quantum suicide in 1987. In this experiment, a person is connected to a fatal weapon and a machine that determines the spin value, or angular momentum, of protons. Every 10 seconds, the spin value, or quark, of a new proton is recorded. Based on this measurement, the machine will cause the weapon to kill or spare the person with a 50 percent chance for each scenario. If the Many-World’s Theory is not true, then the experimenter’s survival probability decreases after every quark measurement until it essentially becomes zero (a fraction raised to a large exponent is a very small value). On the other hand, MWT argues that the experimenter always has a 100% chance of living in some parallel universe and he/she has encountered quantum immortality. When the quark measurement is processed, there are two possibilities: the weapon can either fire or not fire. At this moment, MWT claims that the universe splits into two different universes to account for the two endings. The weapon will discharge in one reality, but not discharge in the other. Scientists cannot use Moravec’s experiment to disprove or corroborate the existence of parallel worlds, as the test subjects may only be dead in that particular reality and still alive in another parallel universe [8]. In any case, the peculiar Many-World’s Theory and its startling implications challenges everything we know about the world.

References

[1] Stanford University, “Quantum Mechanics.” Last modified September 1, 2009. Accessed February March 9, 2014.

[2] Zumdahl SS. Heisenberg Uncertainty Principle. 8th ed. New York City: Cengage Learning; 2008.

[3] Stanford University, “Copenhagen Interpretation of Quantum Mechanics.” Last modified January 24, 2008. Accessed February March 9, 2014.

[4] Byrne, Peter. Scientific American, “The Many Worlds of Hugh Everett.” Last modified October 21, 2008. Accessed February 12, 2014.

[5] Updated News, “Do Parallel Universes Really Exist?” Last modified February 9, 2014. Accessed February 13, 2014.

[6] Randall, Allan. York University, “Quantum Miracles and Immortality.” Last modified August 5, 2004. Accessed February 14, 2014.

[7] Greene BS The Bounds of Reality. New York City: Vintage; 2011

[8] Chown M, Dying to know – Would you lay your life on the line for a theory? NewScientist 1997 Dec 20; 50-51.

Image Credit:

[1] Retrieved September 5, 2014 from: Attribution-NonCommercial-ShareAlike 2.0 Generic. https://www.flickr.com/photos/anua22a/2450798106/in/photolist-wjPLA-e1q7YM-6rF4Td-aiMGos-5Mqchf-7eKpi2-5QEqT4-4iRS6T-4JyYTL-8CQwoX-pqYJK-ecdN2m-88aXjH-5Do92i-4U6yXA-a7WHU1-2hkKMK-iniaf-firCja-g97Nph

 

Jason Chu is a junior at The Harker School. Follow The Triple Helix Online on Twitter and join us on Facebook

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