|  History of Quantum Physics | 
Quantum Mechanics in General
  > s.a. history of XX century physics; path integrals.
  * Idea: First indication with
    Planck's quantum hypothesis, 1900; Patchwork theory developed by Einstein
    (photon), Bohr (atomic model), de Broglie (matter waves); Reworked from scratch
    by Heisenberg (matrix mechanics) and Schrödinger (wave mechanics) in 1925;
    1925, Formulated in the Dreimännerarbeit by Born, Heisenberg and
    Jordan; Equivalence shown by Schrödinger in 1926; 1927, Hilbert-space
    formulation by John von Neumann; Group theory approach by Weyl; 2000s, Some call
    the development of Quantum Information Science the second quantum revolution.
  @ General references:
    Peierls CP(64),
    reprint CP(09);
    Van der Waerden ed-67;
    Dirac 74;
    Mehra pr(76);
    Tagliaferri 77;
    Elsasser 78;
    Feuer 82;
    Mehra & Rechenberg 82–87;
    Cline 87;
    Whittaker 87;
    Jammer 89;
    Darrigol Rech(90), 92;
    Stehle 94;
    Fano RNC(95);
    Duck & Sudarshan 00;
    Kleppner & Jackiw Sci(00)qp;
    Tegmark & Wheeler SA(01)feb-qp;
    Taketani & Nagasaki 02;
    Whitaker 06;
    Lindley 07 [1913-1927];
    Perovic SHPMP(08) [equivalence of matrix and wave mechanics];
    Darrigol SHPMP(09) [simplified arguments];
    Capellmann a1606 [1900-1927].
  @ Books, I: Newton 09; Baggott 11.
  @ Planck: Giulini & Straumann qp/00;
    Kragh pw(00)dec;
    Studart RBEF(00)phy/01;
    Büttner et al SHPMP(03) [and Einstein];
    Nauenberg AJP(16)sep;
    Passon & Grebe-Ellis EJP(17)-a1703 [Planck's radiation law and the teaching of quantum mechanics].
  @ Bohr-Sommerfeld theory: Bucher a0802;
    Seth SHPSA(08) [Sommerfeld];
    Giulini a1109-ch [Max Born's book];
    Pelogia & Brasil EPJH(17)-a1708 [Ishiwara's 1915 article];
    > s.a. Old Quantum Theory.
  @ Bohr: Mehra FP(87)
      [discussions with Einstein, Heisenberg and Schrödinger];
    Caruso & Oguri ONCP(09)-a0806 [re Bohr's atomic model];
    Kragh 12, a1309;
    Hon & Goldstein a1406 [Bohr's theory and previous ones];
    Dorato a1608;
    Ford TPT(18)oct [his first 1913 paper].
  @ Other early quantum theory: Darrigol HSPS(88),
    HSPS(91) [statistics and combinatorics];
    Antoci & Liebscher AFLB(96)phy/97 [Wentzel's approach, precursor of Feynman's];
    Steward 08
      [r CP(12)];
    Boffi a0806/QSF [1925–1927];
    Fedak & Prentis AJP(09)feb [1925 Born & Jordan paper];
    Jones 08 [r PT(09)may Eckert];
    Bernstein a1202
      [Sommerfeld argument for Planck's constant from the Wien displacement law];
    Duncan & Janssen a2003 [1900–1927].
  @ Schrödinger:  Bloch PT(76)dec;
    Mehra 87, FP(87),
    FP(87),
    FP(88);
    Straumann qp/01-conf.
  @ Heisenberg: Effros mp/04 [matrix mechanics].
  @ Einstein: Pais RMP(79);
    Howard in(90) [pre-EPR]; Fine 96 [Einstein's position];
    Campos phy/04 [photon in 1923];
    Giulini in(05)phy;
    Norton SHPMP(06) [light quanta];
    Straumann a1703 [1916 paper on the theory of radiation];
    Yajnik a1905-BIPA [light, Bose and de Broglie];
    Farouki & Grangier a1907-conf,
    Stacey a2003-conf [Einstein-Bohr debate].
  @ Majorana: Drago & Esposito FP(04)phy [and group theory];
    De Gregorio & Esposito AJP(07)sep-phy/06 [Fermi, Majorana, and teaching];
    Esposito phy/06 [and path integrals].
  @ Other people: Lochak in(84) [de Broglie];
    Schücking PT(99)oct [Jordan];
    Bokulich SHPMP(04) [Dirac vs Heisenberg];
    Ram qp/05 [Planck's oscillator and Heisenberg's mechanics];
    Pessoa et al PiP-phy/06 [1966 Tausk controversy];
    Duncan & Janssen phy/06,
    phy/06 [Van Vleck],
    a0709 [Jordan, wave-particle duality for light];
    Gottfried AJP(11)mar-a1006 [Dirac's contributions];
    Duncan & Janssen EPJH(13)-a1204 [Pascual Jordan and John von Neumann].
Specific Topics and Applications > s.a. many-worlds
  interpretation; QBism; time in quantum theory.
  @ General references: Nilson in(76) [bibliography];
    Kuhn 78 [early];
    Squires 85 [fundamental physics];
    Hoddeson et al RMP(87) [metals];
    Milonni & Shih AJP(91)aug [zero-point energy];
    Tomonaga 98 [spin];
    Straumann qp/04-conf [exclusion principle];
    Brush HSPBS(07) [photon];
    Angelow a0710 [uncertainty relation];
    Nanni a1501 [hydrogen atom];
    Yajnik a1701 [photon].
  @ Relativistic quantum mechanics:
    Kim & Noz Symm-a2008 [Dirac];
    Esposito AP(12)-a1110 [Majorana and others];
    Barley et al a2012 [Schrödinger].
  @ Path integrals: Klauder qp/03;
    Sauer a0801-proc [Einstein and Feynman];
    Kaiser 11 [and counterculture, parapsychology].
  @ Entanglement, non-locality, correlations, Bell's theorem:
    Gilder 09
      [I, rec];
    Camilleri SHPMP(09) [entanglement and decoherence];
    Hadjiivanov & Todorov BulgJP-a1506;
    Gillis IJQF-a1506
      [Wiseman, Cavalcanti, and Rieffel's interpretation of Bell's work];
    Arianrhod Cosm(17)oct.
  @ Foundations, interpretations: Beller 99 [Copenhagen];
    Freire HSPBS(05)phy [Bohm's],
    in(07)phy/06 [Wigner's role];
    Bacciagaluppi & Valentini 09,
    comment Holland CP(11)-a1409;
    Nikolić AJP(08)phy/07 [Bohr and Bohm, hypothetical];
    Herzenberg a0812 [Grete Hermann];
    Osnaghi et al SHPMP(09) [Everett's];
    Freire SHPMP(09) [around 1970];
    Camilleri 09 [Heisenberg];
    Pechenkin SHPMP(12) [early statistical interpretations];
    Baracca et al SHPMP(17)-a1608 [Italy in the 1970s];
    Bricmont a1703-conf
      [conceptual issues systematically misunderstood by physicists];
    > s.a. foundations and interpretations [Copenhagen];
      Dieks SHPMP-a1801 [Von Neumann, Bell and hidden variables];
    Del Santo a2011-in [Post-War Italy];
    Mohrhoff QS:MF-a2011
      [Bohr, objectivity, and the irreversibility of measurements];
    Drezet & Stock AFLdB(10/21) [1951 letter from David Bohm to de Broglie].
  @ Experiments: Freire SHPMP(06)phy/05 [Bell's theorem and quantum optics];
    Bromberg HSNS(08);
    van Dongen a1505-conf [the Einstein-Rupp experiments]; 
    > s.a. experiments in quantum mechanics;
      Stern-Gerlach Experiment.
  @ Applications: Esposito & Naddeo a1309 [quantum theory of the chemical bond].
  > Other aspects: see aharonov-bohm effect;
    Hanbury Brown–Twiss Effect [photons]; locality;
    measurement; thermal radiation.
Quantum Field Theory > s.a. history of particle physics
  [including QCD, QED, standard model]; quantum field theory.
  @  General references:
    Darrigol AP-P(84);
    Rüger HSPS(92) [infinities];
    Schroer RVMP(95)ht/94,
    ht/98-JMP;
    Kaiser 05 [Feynman diagrams];
    Close 11;
    't Hooft a1503-in [from QED to grand unification];
    Blum SHPMP-a2011
      [how it became a scattering-based theory].
  @  Specific people: Cini AP(03),
    Schroer EPJH(11)-a1010,
    Dittrich EPJH(15)-a1501 [Pascual Jordan's legacy];
    Schroer a1612 [Rudolf Haag].
  @ In curved spacetime:
    Parker & Navarro-Salas a1702,
    Grib & Pavlov IJMPA(20)-a2004 [early universe, particle creation].
    > Other aspects: see anomalies. 
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  send feedback and suggestions to bombelli at olemiss.edu – modified 2 mar 2021