The epistemological impact of Augustin-Jean Fresnel and his wave theory of light in the 19th century
Abstract
Skepticism and critical inquiry play crucial roles in the scientific process, acting as safeguards against the "ad verecundiam" fallacy, where claims are accepted solely based on authority endorsement. This study thoroughly investigates Augustin-Jean Fresnel's challenge to Newton's corpuscular theory with his innovative wave theory of light. Supported by precise measurements and the "Fresnel integrals," Fresnel earned the Paris Academy of Sciences Prize in 1819. Despite staunch opposition from corpuscular theory proponents, his theory's validity was confirmed with Poisson's point paradox, where light waves from two sources interfere to create a bright spot in the center of a shadow, providing compelling evidence for the wave nature of light. This successful resolution of the paradox confirmed the validity of Fresnel's wave theory and contributed significantly to the acceptance of wave optics over the corpuscular theory. This conflict transcended a mere clash of explanatory models in the physics of light, prompting reflections on the nature of light, reality, and epistemological issues. Examining how Fresnel overcame challenges offers lessons on constructing scientific knowledge, emphasizing the importance of avoiding theory acceptance based solely on authority and focusing on empirical evidence and theoretical coherence. The case of Fresnel serves as a valuable example for teaching the history of science and understanding complex scientific evolution. Analyzing how Fresnel navigated challenges and opposition provides valuable insights into the development of scientific knowledge, emphasizing the intricate nature of scientific progress characterized by debates and efforts to gain acceptance. This study on Fresnel's groundbreaking wave theory of light not only illuminates the historical clash between competing scientific paradigms but also aims to contribute to modern science by emphasizing the enduring significance of empirical evidence and theoretical coherence in knowledge construction. Through an insightful exploration of Fresnel's triumph over challenges, we anticipate offering valuable insights that resonate with contemporary scientific methodologies, fostering a deeper understanding of the dynamic evolution of scientific thought.
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References
Beléndez, A. (2015, June 13). Thomas Young y la naturaleza ondulatoria de la luz. OpenMind. Retrieved from https://www.bbvaopenmind.com/ciencia/grandes-personajes/thomas-young-y-la-naturaleza-ondulatoria-de-la-luz/ [in Spanish].
Boutry, G.-A. (1948). Augustin Fresnel: His Time, Life and Work, 1788‒1827. Science Progress (1933‒), 36(144), 587‒604. Retrieved from http://www.jstor.org/stable/43413515
Buchwald, J. Z. (1989). The battle between Arago and Biot over Fresnel. Journal of Optics, 20(3), 109‒117. https://doi.org/10.1088/0150-536X/20/3/002
Cantor, G. N. (1983). Optics after Newton: theories of light in Britain and Ireland, 1704‒1840. Manchester: Manchester University Press.
Cooper, M. L. (1970). Names in Physics: Fresnel. Physics Education, 5(3), 175‒177. https://doi.org/10.1088/0031-9120/5/3/312
Crosland, M. P. (2002). Science under control: the French Academy of Sciences 1795‒1914. Cambridge: Cambridge University Press.
Descartes, R. (1633). Le Monde / Traité du monde et de la lumière [in French].
Euler, L. (1746). Nova theoria lucis et colorum. Opuscula Varii Argumenti, 1, 169‒244. Retrieved from https://core.ac.uk/download/pdf/303908589.pdf [in Latin].
Fitz Gerald, G. F. (1889). The Ether and the Earth’s Atmosphere. Science, 13(328), 390. https://doi.org/10.1126/science.ns-13.328.390.a
Fresnel, A. (1815). Premier Mémoire sur la Diffraction de la Lumière. Paris: l'Académie des Sciences. Retrieved from http://www.bibnum.education.fr/sites/default/files/Fresnel-texte.pdf [in French].
Fresnel, A. (1866). Oeuvres complètes d’Augustin Fresnel (H. H. Sénarmont, E. Verdet, & L. Fresnel, Eds.). Paris: Imprimerie Impériale. Retrieved from https://archive.org/details/oeuvrescomplte02fresuoft/page/n7/mode/2up?ref=ol&view=theater [in French].
Gbur, G., & Visser, T. D. (2022). Young’s interference experiment: Past, present, and future. Progress in Optics, 67, 275‒343. https://doi.org/10.1016/bs.po.2022.01.003
Geesink, H., & Meijer, D. (2018). Mathematical structure for electromagnetic frequencies that may reflect pilot waves of Bohm’s implicate order. Journal of Modern Physics, 9(5), 851‒897. https://doi.org/10.4236/jmp.2018.95055
Hooke, R. (1665). Micrographia. London: The Royal Society. Retrieved from https://catalog.lindahall.org/view/UniversalViewer/01LINDAHALL_INST/1288795380005961?c=&m=&s=&cv=10&xywh=-2198,0,6532,3100&r=0
Huygens, C. (1678). Treatise on Light. Retrieved from https://www.gutenberg.org/cache/epub/14725/pg14725-images.html
Lentz, T. (2013). Napoleon and his ministers. Napoleonica. La Revue, 1(16), 88‒113. https://doi.org/10.3917/napo.131.0088
Newton, I. (1704). Opticks, or A Treatise of the Reflections, Refractions, Inflections and Colours of Light. London: The Royal Society. https://doi.org/10.5479/sil.302475.39088000644674
Newton, I. (1833). Philosophiae Naturalis Principia Mathematica. Glasgow: G. Brookman [in Latin].
Pimentel, J. (2015). Teorías de la luz y el color en la época de las Luces. De Newton a Goethe. Arbor, 191(775), a264. https://doi.org/10.3989/arbor.2015.775n5003 [in Spanish].
Robinson, A. (2023). The Last Man Who Knew Everything. Cambridge: Open Book Publishers. https://doi.org/10.11647/OBP.0344
Roemer, O. (1676). Demonstration touchant le mouvement de la lumiere trouve par M. Roemer de l’Academie Royale des Sciences. Journal des Sçavans, 233‒236. Retrieved from http://www-obs.univ-lyon1.fr/labo/fc/ama09/pages_jdsc/pages/jdsc_1676_lumiere.pdf [in French].
Rossi, B. (1978). Fundamentos de óptica. Barcelona: Reverté [in Spanish].
Shetty, P. P., & Bingi, J. (2020). Demonstration of synergic Fresnel and Fraunhofer diffraction for application to micrograting fabrication. Optics & Laser Technology, 130, 106340. https://doi.org/10.1016/j.optlastec.2020.106340
Silliman, R. H. (1967). Augustin Fresnel (1788‒1827) and the Establishment of the Wave Theory of Light. (PhD dissertation). Princeton University. Retrieved from https://www.proquest.com/openview/88367846e262d64a177347f49a6b2413/1.pdf?pq-origsite=gscholar&cbl=18750&diss=y
Young, T. (1802). II. The Bakerian Lecture. On the theory of light and colours. Philosophical Transactions of the Royal Society of London, 92(92), 12‒48. https://doi.org/10.1098/rstl.1802.0004
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