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162. R.M.F. Houtappel, H. Van Dam, E.P. Wigner, Rev. Mod. Phys. 37, 595–632 (1965)
163. L.P. Hughston, Proc. Roy. Soc. Lond. A 452, 953–979 (1996)
164. S.S. Horuzhy (Choruzij), Vvedenie v algebraiˇ ceskuiyu kvantovuiyu teoriyu polia (Introduction
to Algebraic Quantum Field Theory) (Nauka, Moscow, 1986)
165. C.J. Isham, Topological and global aspects of quantum theory, in The Proceedings of Les
Houches XL (1983):Relativity, Groups and Topology II, ed. by B.S. DeWitt, R. Stora (NorthHolland, Amsterdam, New York, Tokyo, 1984), pp. 1059–1290
166. C. Itzykson, J.-B. Zuber, Quantum Field Theory (McGraw-Hill, New York, London, Toronto,
1980)
167. J.M. Jauch, Foundations of Quantum Mechanics (Reading, Mass., 1968)
168. F. Jelinek, Commun. Math. Phys. 9, 169–175 (1968)
169. K.R.W. Jones, Ann. Phys. 233, 295–316 (1994); K.R.W. Jones, Phys. Rev. A 48, 822–825
(1993); K.R.W. Jones, Phys. Rev. A 50, 1062–1070 (1994)
170. T.F. Jordan, Ann. Phys. (NY) 225, 83 (1993)
171. P. Jordan, E. Wigner, Zs. f. Phys. 47, 631 (1928)
172. K.G. Kay, Phys. Rev. A 42, 3718–3725 (1990)
173. T.W.B. Kibble, Commun. Math. Phys. 65, 189–201 (1979)
174. A.A. Kirillov, Elementy teorii predstavleniyi (Elements of Representations Theory), 2nd edn.
(Nauka, Moscow, 1978)
175. J. Kiukas, P. Lahti, J.P. Pellonpää, K. Ylinen, Found. Phys., 49 (2019). https://doi.org/10.
1007/s10701-019-00261-3
176. J.R. Klauder, J. Math. Phys. 4, 1058 (1963)
177. F. Klein, Math. Ann. 43, 63 (1893)
178. S. Kobayashi, K. Nomizu, Foundations of Differential Geometry, vols. 1 and 2, Interscience,
New York, 1963 and 1969, Russ. edn. (Nauka, Moscow, 1981)
179. B.O. Koopman, Proc. Natl. Acad. Sci. 17, 315–318 (1931)
180. G.A. Korn, T.M. Korn, Mathematical Handbook for scientists and engineers-definitions, theorems and formulas for reference and review, 2nd edn. (McGraw-Hill, 1968); Russ. transl.
Nauka, Moscow, 1973
181. I.P. Kornfel’d, J.G. Sinaj, C.V. Fomin, Ergodiˇ ceskaja Teorija (Ergodic Theory) (Nauka,
Moscow, 1980)
182. P. Kramer, M. Saraceno, Geometry of the Time-Dependent Variational Principle in Quantum
Mechanics. LNP 140 (Springer, New York, 1981)
183. A. Kriegl, P.W. Michor, Foundations of Global Analysis. Manuscript of monograph (Institut
für Mathematik der Universität Wien, Vienna, 1995)
184. T.S. Kuhn, The Structure of Scientific Revolutions, 2nd edn. (Chicago, 1970); Slovak translation: Pravda, Bratislava, 1982
185. L.D. Landau, E.M. Lifšic, Mechanika (Mechanics). Theoretical Physics, vol. I (FM, Moscow,
1958)
186. L.D. Landau, E.M. Lifšic, Statistiˇ ceskaya Fizika (Statistical Physics). Theoretical Physics,
vol. V, 2nd edn. (Nauka, Moscow, 1964)
187. L.D. Landau, E.M. Lifšic, Kvantovaya Mechanika-nerelativistskaya teoriya (Nonrel. Quantum Mechanics). Theoretical Physics, vol. III, 2nd edn. (GIFML, Moscow, 1963)
188. L.D. Landau, E. M. Lifšic, Teoriya Polya (Field Theory). Theoretical Physics, vol. II, 3rd edn.
(GIFML, Moscow, 1960)
189. N.P. Landsman, Mathematical Topics Between Classical and Quantum Mechanics. Springer
Monographs in Mathematics (Springer, New York, 1998)
190. N.P. Landsman, Rev. Math. Phys. 2, 45 (1990); ibid 9, 29–57 (1997); N.P. Landsman, Int. J.
Mod. Phys. A30, 5349–5371 (1991); ibid B10, 1545–1554 (1996); N.P. Landsman, J. Geom.
Phys. 15, 285–319 (1995)
191. N.P. Landsman, Spontaneous Symmetry Breaking in Quantum Systems: Emergence or Reduction?. arxiv:1305.4473 [math-ph], 2 August 2013
192. K. Landsman, Foundations of Quantum Theory. From Classical Concepts to Operator Algebras. Fundamental Theories in Physics 188, Springer Open 2017
