Physical processes behind the emergence of fringes in superposition effects

B-G. Englert, Uncertainty relation revisited (2023) https://doi.org/10.48550/arXiv.2310.05039

C. Roychoudhuri, Foundation of physics, heisenberg’s microscope—a misleading illustration. Found. Phys. 8, 845–849 (1978)

Article  ADS  Google Scholar 

C. Roychoudhuri, Causal Physics: Photon by Non-Interaction of Waves (Taylor and Francis, Abingdon, 2014)

Google Scholar 

S. Ings, Visual science Book: A Natural History of Seeing: The Art and Science of Vision (W. W. Norton and Co., New York City, 2008)

Google Scholar 

L. Mandel, E. Wolf, Optical Coherence and Quantum Optics (Cambridge University, Cambridge, 1995)

Book  Google Scholar 

R.J. Glauber, The quantum theory of optical coherence. Phys. Rev. 130, 2529 (1963)

Article  ADS  MathSciNet  Google Scholar 

E.C.G. Sudarshan, Equivalence of semiclassical and quantum mechanical description of statistical light beams. Phys. Rev. Let. 10(7), 277 (1963)

Article  ADS  MathSciNet  Google Scholar 

W.E. Lamb, M.O. Scully, in Polarization, Matter and Radiation; Jubilee volume in honor of Alfred Kastler. Photoelectric effect without photons (Presses Universitaires de France, Paris, 1969) pp. 363–369

G. Grynberg, A. Aspect, C. Fabre, Introduction to Quantum Optics: From the Semi-Classical Approach to Quantized Light (Cambridge U. Press, Cambridge U, 2010)

Book  Google Scholar 

A. Zajonc, in Nature of Light: What is a Photon?, ed. by C. Roychoudhuri, R. Roy. Light reconsidered: what is a Photon (Optics and Photonics News, Oct. 2003). https://www.phys.uconn.edu/~chandra/03-What’s%20Photon-OPN.pdf

K. Hentschel, Photons: The History and Mental Models of Light Quanta (Springer, Berlin, 2018)

Book  Google Scholar 

Wikipedia (2024) Incomplete Reference. https://en.wikipedia.org/wiki/Superposition_principle

E.P. Wigner, The problem of measurement. Am. J. Phys. 31, 6–15 (1963)

Article  ADS  MathSciNet  Google Scholar 

Wikipedia: Godel’s Incompleteness Theorem https://en.wikipedia.org/wiki/G%C3%B6del%27s_incompleteness_theorems

C. Huygens, Treatise on Light (1690) https://www.gutenberg.org/files/14725/14725-h/14725-h.htm

O. Stenzel, Light-Matter Interaction: A Crash Course for Students of Optics Photonics and Materials Science (Springer, Berlin, 2022)

Book  Google Scholar 

C. Roychoudhuri, Cosmic ether is the unified field of physics. Eu. J. Appl Sci. 11, 6 (2023). https://doi.org/10.14738/aivp.116.15380

Article  Google Scholar 

P. Agostini, F. Krausz; A.L’Hullier, Nobel Laureates in Physics. Brief biographies and the list of publications (2023). https://www.aip.org/science-news/nobel2023

M. Kumar, Bohr Einstein Debate, Quantum: Einstein, Bohr and the Great Debate about the Nature of Reality (Icon Books, London, 2014)

Google Scholar 

J.W. Goodman, Introduction to Fourier Optics (McGraw Hill, New York, 1988)

Google Scholar 

G.O. Reynolds, J.B. DeVelis, G.B. Parrent, B.J. Thompson, Physical Optics Notebook: Tutorial in Fourier Optics (SPIE Opt. Eng. Press, Bellingham, 1989)

Book  Google Scholar 

C. Roychoudhuri, The locality of the superposition principle is dictated by detection processes. Phys. Essays 19(3), 333 (2006)

Article  ADS  Google Scholar 

C. Roychoudhuri, The Double-Slit and the Mach-Zehnder Interferometer: Re-visiting through Asymmetry, Ch. 8, in Fundamental Research and Applications of Physical Sciences, vol. 3, ed. by S.-H. Dong (B. P. International, Hooghly, 2023). https://doi.org/10.9734/bpi/fraps/v3/6355A

M. Born, E. Wolf, Principles of Optics (Pergamon Press, Oxford, 2020)

Google Scholar 

A. Michelson, Studies in Optics (Dover, Mineola, 1995)

Google Scholar 

E. Hecht, Optics (Addison-Wesley, Boston, 1988)

Google Scholar 

C. Roychoudhuri, “Active roles of Poynting vectors and Pi-phase shift in observing the superposition outputs through a Mach-Zehnder interferometer”, APS March Meeting, AA05 V: Undergrad Research I (2023) https://meetings.aps.org/Meeting/MAR23/Session/AA05.7

P. McManamon, LiDAR Technologies and Systems (SPIE, 2019)

C. Roychoudhuri, N. Tirfessa, Do we count indivisible photons or discrete quantum events experienced by detectors, Ch. 26, in The Nature of Light: What is a Photon?. ed. by C. Roychoudhuri, A.F. Kracklauer, K. Creath (CRC/Taylor and Francis, Boca Raton, 2008)

Google Scholar 

W. Demotroder, Laser Spectrometry (Springer, Berlin, 1998)

Google Scholar 

C. Roychoudhuri, N. Prasad, Resolving Wave-Particle Duality could accelerate the mass production of Quantum Computers, SPIE Proc. 12911-40 (2024)

J.D. Hidary, Quantum Computing: An Applied Approach (Springer, Berlin, 2021)

Book  Google Scholar 

J.S. Bell, A. Aspect, Speakable and Unspeakable in Quantum Mechanics: Collected Papers on Quantum Philosophy (Cambridge University Press, Cambridge, 2004)

Book  Google Scholar 

Wikipedia: Control of fire by early humans; https://en.wikipedia.org/wiki/Control_of_fire_by_early_humans

M. Planck, [Theory of Heat Radiation], 1914. Project Gutenberg. https://www.gutenberg.org/files/40030/40030-pdf.pdf

Oxford Academic, Optics in the Nineteenth Century, https://doi.org/10.1093/oxfordhb/9780199696253.013.16

S. Xiao et al., Active metamaterials and meta devices: a review. J. Phys. D Appl. Phys. 53, 503002 (2020). https://doi.org/10.1088/1361-6463/abaced

Article  Google Scholar 

D. Funaro, From Photons to Atoms: The Electromagnetic Nature of Matter (World Scientific, Singapore, 2020)

Google Scholar 

D.V. Ponte, L. Schafer, Carl Gustav Jung, Quantum Physics and the Spiritual Mind: A Mystical Vision of the Twenty-First Century. Behav. Sci. 3, 601–618 (2013). https://doi.org/10.3390/bs3040601

Article  Google Scholar 

S. Lloyd, Programming the Universe, (Kindle Edition, 2006)

留言 (0)

沒有登入
gif