{"id":503,"date":"2020-02-13T17:11:40","date_gmt":"2020-02-13T17:11:40","guid":{"rendered":"http:\/\/www.themepush.com\/demo-mediumish2\/?p=503"},"modified":"2020-02-13T17:11:40","modified_gmt":"2020-02-13T17:11:40","slug":"scientific-inquiry-into-the-wave-nature-of-light","status":"publish","type":"post","link":"https:\/\/bestlaptop.id\/blog\/scientific-inquiry-into-the-wave-nature-of-light\/","title":{"rendered":"Scientific inquiry into the wave nature of light"},"content":{"rendered":"\n<p class=\"has-drop-cap wp-block-paragraph\">Planck cautiously insisted that this was simply an aspect of the processes of absorption and emission of radiation and had nothing to do with the&nbsp;<em>physical reality<\/em>&nbsp;of the radiation itself.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-13\">[12]<\/a><\/sup>&nbsp;In fact, he considered his quantum hypothesis a mathematical trick to get the right answer rather than a sizable discovery.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-Kragh-14\">[13]<\/a><\/sup>&nbsp;However, in 1905&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Albert_Einstein\">Albert Einstein<\/a>&nbsp;interpreted Planck&#8217;s quantum hypothesis&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Local_realism\">realistically<\/a>&nbsp;and used it to explain the&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Photoelectric_effect\">photoelectric effect<\/a>, in which shining light on certain materials can eject electrons from the material. He won the 1921 Nobel Prize in Physics for this work.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">Einstein further developed this idea to show that an&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Electromagnetic_wave\">electromagnetic wave<\/a>&nbsp;such as light could also be described as a particle (later called the&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Photon\">photon<\/a>), with a discrete quantum of energy that was dependent on its frequency.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-15\">[14]<\/a><\/sup><\/p>\n\n\n\n<div class=\"wp-block-image\"><figure class=\"alignright\"><a href=\"https:\/\/en.wikipedia.org\/wiki\/File:Solvay_conference_1927.jpg\"><img decoding=\"async\" src=\"https:\/\/upload.wikimedia.org\/wikipedia\/commons\/thumb\/6\/6e\/Solvay_conference_1927.jpg\/250px-Solvay_conference_1927.jpg\" alt=\"\"\/><\/a><figcaption>Awesome image here<\/figcaption><\/figure><\/div>\n\n\n\n<p class=\"wp-block-paragraph\">The 1927&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Solvay_Conference\">Solvay Conference<\/a>&nbsp;in&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Brussels\">Brussels<\/a><\/p>\n\n\n\n<p class=\"wp-block-paragraph\">The foundations of quantum mechanics were established during the first half of the 20th century by&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Max_Planck\">Max Planck<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Niels_Bohr\">Niels Bohr<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Werner_Heisenberg\">Werner Heisenberg<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Louis_de_Broglie\">Louis de Broglie<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Arthur_Compton\">Arthur Compton<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Albert_Einstein\">Albert Einstein<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Erwin_Schr%C3%B6dinger\">Erwin Schr\u00f6dinger<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Max_Born\">Max Born<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/John_von_Neumann\">John von Neumann<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Paul_Dirac\">Paul Dirac<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Enrico_Fermi\">Enrico Fermi<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Wolfgang_Pauli\">Wolfgang Pauli<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Max_von_Laue\">Max von Laue<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Freeman_Dyson\">Freeman Dyson<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/David_Hilbert\">David Hilbert<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Wilhelm_Wien\">Wilhelm Wien<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Satyendra_Nath_Bose\">Satyendra Nath Bose<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Arnold_Sommerfeld\">Arnold Sommerfeld<\/a>, and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Category:Quantum_physicists\">others<\/a>. The&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Copenhagen_interpretation\">Copenhagen interpretation<\/a>&nbsp;of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Niels_Bohr\">Niels Bohr<\/a>&nbsp;became widely accepted.<\/p>\n\n\n\n<p class=\"wp-block-paragraph\">In the mid-1920s, developments in quantum mechanics led to its becoming the standard formulation for atomic physics. In the summer of 1925, Bohr and Heisenberg published results that closed the old quantum theory. Out of deference to their particle-like behavior in certain processes and measurements, light quanta came to be called&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Photon\">photons<\/a>&nbsp;(1926). In 1926&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Erwin_Schr%C3%B6dinger\">Erwin Schr\u00f6dinger<\/a>&nbsp;suggested a partial differential equation for the wave functions of particles like electrons. And when effectively restricted to a finite region, this equation allowed only certain modes, corresponding to discrete quantum states&nbsp;\u2013 whose properties turned out to be exactly the same as implied by matrix mechanics.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-16\">[15]<\/a><\/sup>&nbsp;From Einstein&#8217;s simple postulation was born a flurry of debating, theorizing, and testing. Thus, the entire field of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_physics\">quantum physics<\/a>&nbsp;emerged, leading to its wider acceptance at the Fifth&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Solvay_Conference\">Solvay Conference<\/a>&nbsp;in 1927.<sup>[<em><a href=\"https:\/\/en.wikipedia.org\/wiki\/Wikipedia:Citation_needed\">citation needed<\/a><\/em>]<\/sup><\/p>\n\n\n\n<p class=\"wp-block-paragraph\">It was found that&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Subatomic_particles\">subatomic particles<\/a>&nbsp;and electromagnetic waves are neither simply particle nor wave but have certain properties of each. This originated the concept of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Wave%E2%80%93particle_duality\">wave\u2013particle duality<\/a>.<sup>[<em><a href=\"https:\/\/en.wikipedia.org\/wiki\/Wikipedia:Citation_needed\">citation needed<\/a><\/em>]<\/sup><\/p>\n\n\n\n<p class=\"wp-block-paragraph\">By 1930, quantum mechanics had been further unified and formalized by the work of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/David_Hilbert\">David Hilbert<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Paul_Dirac\">Paul Dirac<\/a>&nbsp;and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/John_von_Neumann\">John von Neumann<\/a><sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-17\">[16]<\/a><\/sup>&nbsp;with greater emphasis on&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Measurement_in_quantum_mechanics\">measurement<\/a>, the statistical nature of our knowledge of reality, and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Interpretations_of_quantum_mechanics\">philosophical speculation about the &#8216;observer&#8217;<\/a>. It has since permeated many disciplines, including quantum chemistry,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_electronics\">quantum electronics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_optics\">quantum optics<\/a>, and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_information_science\">quantum information science<\/a>. Its speculative modern developments include&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/String_theory\">string theory<\/a>&nbsp;and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_gravity\">quantum gravity<\/a>&nbsp;theories. It also provides a useful framework for many features of the modern&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Periodic_table\">periodic table of elements<\/a>, and describes the behaviors of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Atoms\">atoms<\/a>&nbsp;during&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Chemical_bond\">chemical bonding<\/a>&nbsp;and the flow of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Electron\">electrons<\/a>&nbsp;in computer&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Semiconductor\">semiconductors<\/a>, and therefore plays a crucial role in many modern technologies.<sup>[<em><a href=\"https:\/\/en.wikipedia.org\/wiki\/Wikipedia:Citation_needed\">citation needed<\/a><\/em>]<\/sup><\/p>\n\n\n\n<p class=\"wp-block-paragraph\">While quantum mechanics was constructed to describe the world of the very small, it is also needed to explain some&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Macroscopic\">macroscopic<\/a>&nbsp;phenomena such as&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Superconductivity\">superconductors<\/a>,<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-18\">[17]<\/a><\/sup>&nbsp;and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Superfluid\">superfluids<\/a>.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-19\">[18]<\/a><\/sup><\/p>\n\n\n\n<p class=\"wp-block-paragraph\">The word&nbsp;<em>quantum<\/em>&nbsp;derives from the&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Latin_language\">Latin<\/a>, meaning &#8220;how great&#8221; or &#8220;how much&#8221;.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-20\">[19]<\/a><\/sup>&nbsp;In quantum mechanics, it refers to a discrete unit assigned to certain&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Physical_quantity\">physical quantities<\/a>&nbsp;such as the&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Energy\">energy<\/a>&nbsp;of an&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Atom\">atom<\/a>&nbsp;at rest (see Figure 1). The discovery that particles are discrete packets of energy with wave-like properties led to the branch of physics dealing with atomic and subatomic systems which is today called quantum mechanics. It underlies the&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Mathematical\">mathematical<\/a>&nbsp;framework of many fields of&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Physics\">physics<\/a>&nbsp;and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Chemistry\">chemistry<\/a>, including&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Condensed_matter_physics\">condensed matter physics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Solid-state_physics\">solid-state physics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Atomic_physics\">atomic physics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Molecular_physics\">molecular physics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Computational_physics\">computational physics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Computational_chemistry\">computational chemistry<\/a>, quantum chemistry,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Particle_physics\">particle physics<\/a>,&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Nuclear_chemistry\">nuclear chemistry<\/a>, and&nbsp;<a href=\"https:\/\/en.wikipedia.org\/wiki\/Nuclear_physics\">nuclear physics<\/a>.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-21\">[20]<\/a><\/sup><sup>[<em><a href=\"https:\/\/en.wikipedia.org\/wiki\/Wikipedia:NOTRS\">better&nbsp;source&nbsp;needed<\/a><\/em>]<\/sup>&nbsp;Some fundamental aspects of the theory are still actively studied.<sup><a href=\"https:\/\/en.wikipedia.org\/wiki\/Quantum_mechanics#cite_note-22\">[21]<\/a><\/sup><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Planck cautiously insisted that this was simply an aspect of the processes of absorption and emission of radiation and had nothing to do with the&nbsp;physical reality&nbsp;of the radiation itself.[12]&nbsp;In fact, he considered his quantum hypothesis a mathematical trick to get the right answer rather than a sizable discovery.[13]&nbsp;However, in 1905&nbsp;Albert Einstein&nbsp;interpreted Planck&#8217;s quantum hypothesis&nbsp;realistically&nbsp;and used [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":504,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"om_disable_all_campaigns":false,"_monsterinsights_skip_tracking":false,"footnotes":""},"categories":[27],"tags":[],"class_list":["post-503","post","type-post","status-publish","format-standard","has-post-thumbnail","category-technology"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.3 - 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