Matching Items (6)
Filtering by

Clear all filters

DescriptionThis project covers the history and background of the phenomenon in quantum physics known as quantum entanglement. The paper then describes the experiments done by the 2022 Nobel Prize winners on entangled particles and the possible real-world applications of such research.
ContributorsHossain, Tasnia (Author) / Foy, Joseph (Thesis director) / Hines, Taylor (Committee member) / Barrett, The Honors College (Contributor) / Mechanical and Aerospace Engineering Program (Contributor)
Created2023-05
166212-Thumbnail Image.png
Description

Our work explores a fascinating experiment in physics and science, the Double-Slit Experiment. We cover the mystery of this experiment, representing the wave and particle nature of photons, electrons, and quantum elements. We recount the history of quantum physics, an unknown field for most people due to its detachment from

Our work explores a fascinating experiment in physics and science, the Double-Slit Experiment. We cover the mystery of this experiment, representing the wave and particle nature of photons, electrons, and quantum elements. We recount the history of quantum physics, an unknown field for most people due to its detachment from the world we see. Finally, we explore the capability of the human eye to detect light in its quantum state, closing the gap between us and quantum physics.

ContributorsAndersen, Liam (Author) / Bujan, Reynaldo R. (Co-author) / Foy, Joseph (Thesis director) / Martin, Thomas (Committee member) / Barrett, The Honors College (Contributor) / College of Health Solutions (Contributor)
Created2022-05
166213-Thumbnail Image.png
Description

Our work explores a fascinating experiment in physics and science, the Double-Slit Experiment. We cover the mystery of this experiment, representing the wave and particle nature of photons, electrons, and quantum elements. We recount the history of quantum physics, an unknown field for most people due to its detachment from

Our work explores a fascinating experiment in physics and science, the Double-Slit Experiment. We cover the mystery of this experiment, representing the wave and particle nature of photons, electrons, and quantum elements. We recount the history of quantum physics, an unknown field for most people due to its detachment from the world we see. Finally, we explore the capability of the human eye to detect light in its quantum state, closing the gap between us and quantum physics.

ContributorsBujan, Reynaldo R. (Author) / Andersen, Liam (Co-author) / Foy, Joseph (Thesis director) / Martin, Thomas (Committee member) / Barrett, The Honors College (Contributor) / College of Health Solutions (Contributor)
Created2022-05
147783-Thumbnail Image.png
Description

This paper analyzes the history and impact of the double-slit experiment on the world of physics. The experiment was initially created by Thomas Young in the early nineteenth century to prove that light behaved as a wave, and the experiment’s findings ended up being foundational to the classical wave theory

This paper analyzes the history and impact of the double-slit experiment on the world of physics. The experiment was initially created by Thomas Young in the early nineteenth century to prove that light behaved as a wave, and the experiment’s findings ended up being foundational to the classical wave theory of light. Decades later, the experiment was replicated once more with electrons instead of light and shockingly demonstrated that electrons possessed a dual nature of behavior in that they acted in some instances as particles and in others as waves. Despite numerous modifications and replications, the dual behavior of electrons has never been definitively explained. Numerous interpretations of quantum mechanics all offer their own explanations of the double-slit experiment’s results. Notably, the Copenhagen Interpretation states that an observer measuring a quantum system, such as the double-slit experiment, causes the electrons to behave classically (i.e. as a particle.) The Many Worlds Interpretation offers that multiple branching worlds come into existence to represent the physical occurrence of all probable outcomes of the double-slit experiment. In these and other interpretations, explanations of the double-slit experiment are key to proving their respective dogmas. The double-slit experiment has historically been very important to the worlds of both classical and quantum physics and is still being modified and replicated to this day. It is clear that it will continue to remain relevant even in the future of physics.

ContributorsRodriguez, Zachary M (Author) / Foy, Joseph (Thesis director) / Hines, Taylor (Committee member) / Department of Information Systems (Contributor) / Barrett, The Honors College (Contributor)
Created2021-05
Description
We discuss the intricate and puzzling concept of quantum entanglement, and not only define it but also consider the implications of the behaviors of entangled particles. The ability of these particles to provide instantaneous information about their entangled counterparts sparked a debate among physicists as to whether or not these particles had

We discuss the intricate and puzzling concept of quantum entanglement, and not only define it but also consider the implications of the behaviors of entangled particles. The ability of these particles to provide instantaneous information about their entangled counterparts sparked a debate among physicists as to whether or not these particles had definite quantities before measurement, and whether or not their behaviors could be explained by a local hidden-variables theorem. Mermin’s gedanken demonstration for a two-particle entangled system is introduced, as well as Bell’s inequality, and an explanation of how a pair of two entangled particles violate this inequality. Additionally, we also discuss various experimental verifications that were able to use Bell’s inequality to verify the expected quantum mechanical results for their entangled systems.
ContributorsDavis, Elsie (Author) / Foy, Joseph (Thesis director) / Hines, Taylor (Committee member) / Barrett, The Honors College (Contributor) / College of Integrative Sciences and Arts (Contributor)
Created2024-05
Description
Despite being fundamental to how they experience the world around them, humans have not properly understood how it behaves and functions. In fact, the classical understanding of light has only developed within the past 600 years. The scientific consensus in the time of Sir Isaac Newton held that light behaved

Despite being fundamental to how they experience the world around them, humans have not properly understood how it behaves and functions. In fact, the classical understanding of light has only developed within the past 600 years. The scientific consensus in the time of Sir Isaac Newton held that light behaved such that it is like a particle, however certain phenomena and discoveries, like diffraction and polarization, would begin to show that light actually must behave like a wave. This wave theory of light was a very successful model that represented light extraordinarily well for its time. Despite this, evidence began to mount that light could actually be quantized, meaning that it has a base unit that it cannot be divided further from, with Albert Einstein advocating that light sometimes must be treated as a particle. This gave rise to quantum mechanics which installs something comparable to a hybrid between the particle and wave theories of light by treating light as being composed of particles known as photons that have wave-like characteristics. The wave theory of light, or classical physics, have different explanations of the characteristics of light and how it behaves, as well as diverging interpretations of the causes. In this essay, I will delve into the history of the theory of light, the major discoveries in the process, and the significance of these developments. In addition, I will consider the differences in the two major theories of light, the wave theory and the quantum mechanical perspective, and present notable phenomena through the lens of either ideology.
ContributorsFeldman, Aidan (Author) / Foy, Joseph (Thesis director) / Hines, Taylor (Committee member) / Barrett, The Honors College (Contributor) / College of Integrative Sciences and Arts (Contributor)
Created2024-05