222
Bibliography
193. O.E. Lanford, D. Ruelle, Commun. Math. Phys. 13, 194–215 (1969)
194. G. Lassner, Rep. Math. Phys. 3, 279 (1972); G. Lassner, Algebras of unbounded operators
and quantum dynamics, in Proceedings of the VIIth International Congress on Mathematical
Physics, Boulder, Colorado, USA, August 1–10, 1983, ed. by W.E. Brittin, K.E. Gustafson,
W. Wyss (North–Holland, Amsterdam, 1984), pp. 471–480
195. A.J. Leggett, J. Phys. Condens. Matter 14, R415–R451 (2002); Topical Review: Testing the
limits of quantum mechanics: motivation, state of play, prospects
196. A.J. Leggett, J. Phys. A Math. Theor. 40, 3141–3149 (2007)
197. P. Leifer, Nonlinear modification of quantum mechanics, hep-th/9702160
198. M. Lewenstein, A. Sampera, Phys. Rev. Lett. 80, 2261 (1998)
199. E.H. Lieb, Commun. Math. Phys. 31, 327 (1973)
200. E.H. Lieb, R. Seiringer, The Stability of Matter in Quantum Mechanics (Cambridge University
Press, 2010)
201. E. Lieb, T. Schultz, D. Mattis, Ann. Phys. 16, 407 (1961); E. Lieb, D. Mattis, Mathematical
Physics in One Dimension (Academic Press, New York and London, 1966)
202. G. Ludwig, Z. Phys. 135, 483 (1953); G. Ludwig, Phys. B1 11, 489 (1955); G. Ludwig, Z.
Phys. 152, 98 (1958); G. Ludwig, Commun. Math. Phys. 4, 331 (1967); G. Ludwig, Commun.
Math. Phys. 9 (1968)
203. G. Ludwig, An Axiomatic Basis of Quantum Mechanics, vols. I and II (Springer, New York,
1985 & 1987)
204. W. Lücke, Nonlinear schrödinger dynamics and nonlinear observables, in Nonlinear,
Deformed, and Irreversible Quantum Systems, ed. by H.-D. Doebner, V.K. Dobrev, P. Nattermann (World Scientific, Singapore, 1995); W. Lücke, Gisin Nonlocality of the DoebnerGoldin 2-Particle Equation, quant-ph/9710033 (1997); W. Lücke, R.F. Werner, Inconsistency
of Bialynicki-Birula and Mycielski’s Nonlinear Quantum Mechanics. A talk in the Doppler
Institute (Czech Technical University, Prague, April 1997)
205. E. Mach, Die Mechanik in ihrer Entwicklung (Leipzig, 1933)
206. E. Mach, Populär-Wissenschaftliche Vorlesungen (Johann Ambrosius Barth, Leipzig, 1910)
207. G.W. Mackey, Mathematical Foundations of Quantum Mechanics (Benjamin, Reading, Mass.,
1963)
208. G.W. Mackey, Induced Representations (Benjamin, Reading, Mass., 1968)
209. G.W. Mackey, Unitary Representations in Physics, Probability, and Number Theory (Benjamin, Reading, Mass., 1978)
210. N.H. March, W.H. Young, S. Sampanthar, The Many-Body Problem in Quantum Mechanics
(Cambridge University Press, Cambridge, 1967)
211. L. Markus, K.R. Meyer, Generic Hamiltonian Dynamical Systems are Neither Integrable nor
Ergodic. Memoirs of AMS, Number 144 (Providence, Rhode Island, 1974)
212. C.M. Marle, in Bifurcation Theory, Mechanics and Physics, ed. by C.P. Bruter, A. Aragnol,
A. Lichnerowicz (D. Reidel, Dordrecht, Boston, Lancaster, 1983)
213. J.E. Marsden, Geometric Methods in Mathematical Physics. LNM 775 (Springer, New York,
1980)
214. J.E. Marsden, T.S. Ratiu, Introduction to Mechanics and Symmetry (Springer, New York,
1999)
215. J.E. Marsden, M. McCracken, The Hopf Bifurcation and its Applications (Springer, New York,
1976)
216. N.D. Mermin, Rev. Mod. Phys. 65, 803–815 (1993)
217. A. Messiah: Quantum Mechanics (Russ. transl. from French) (Nauka, Moscow, 1978)
218. P.A. Meyer: Probability and Potentials (Blaisdell Pub. Co., Waltham, Mass., Toronto, London,
1966)
219. B. Mielnik, Commun. Math. Phys. 37, 221–256 (1974)
220. D. Montgomery, L. Zippin, Ann. Math. 56, 213–241 (1952)
221. G. Morchio, F. Strocchi, Commun. Math. Phys. 99, 153 (1985)
222. G. Morchio, F. Strocchi: J. Math. Phys. 28, (1987) 622; F. Strocchi , Long-range dynamics
and spontaneous symmetry breaking in many-body systems, preprint ISAS-Trieste, 1987
Bibliography
193. O.E. Lanford, D. Ruelle, Commun. Math. Phys. 13, 194–215 (1969)
194. G. Lassner, Rep. Math. Phys. 3, 279 (1972); G. Lassner, Algebras of unbounded operators
and quantum dynamics, in Proceedings of the VIIth International Congress on Mathematical
Physics, Boulder, Colorado, USA, August 1–10, 1983, ed. by W.E. Brittin, K.E. Gustafson,
W. Wyss (North–Holland, Amsterdam, 1984), pp. 471–480
195. A.J. Leggett, J. Phys. Condens. Matter 14, R415–R451 (2002); Topical Review: Testing the
limits of quantum mechanics: motivation, state of play, prospects
196. A.J. Leggett, J. Phys. A Math. Theor. 40, 3141–3149 (2007)
197. P. Leifer, Nonlinear modification of quantum mechanics, hep-th/9702160
198. M. Lewenstein, A. Sampera, Phys. Rev. Lett. 80, 2261 (1998)
199. E.H. Lieb, Commun. Math. Phys. 31, 327 (1973)
200. E.H. Lieb, R. Seiringer, The Stability of Matter in Quantum Mechanics (Cambridge University
Press, 2010)
201. E. Lieb, T. Schultz, D. Mattis, Ann. Phys. 16, 407 (1961); E. Lieb, D. Mattis, Mathematical
Physics in One Dimension (Academic Press, New York and London, 1966)
202. G. Ludwig, Z. Phys. 135, 483 (1953); G. Ludwig, Phys. B1 11, 489 (1955); G. Ludwig, Z.
Phys. 152, 98 (1958); G. Ludwig, Commun. Math. Phys. 4, 331 (1967); G. Ludwig, Commun.
Math. Phys. 9 (1968)
203. G. Ludwig, An Axiomatic Basis of Quantum Mechanics, vols. I and II (Springer, New York,
1985 & 1987)
204. W. Lücke, Nonlinear schrödinger dynamics and nonlinear observables, in Nonlinear,
Deformed, and Irreversible Quantum Systems, ed. by H.-D. Doebner, V.K. Dobrev, P. Nattermann (World Scientific, Singapore, 1995); W. Lücke, Gisin Nonlocality of the DoebnerGoldin 2-Particle Equation, quant-ph/9710033 (1997); W. Lücke, R.F. Werner, Inconsistency
of Bialynicki-Birula and Mycielski’s Nonlinear Quantum Mechanics. A talk in the Doppler
Institute (Czech Technical University, Prague, April 1997)
205. E. Mach, Die Mechanik in ihrer Entwicklung (Leipzig, 1933)
206. E. Mach, Populär-Wissenschaftliche Vorlesungen (Johann Ambrosius Barth, Leipzig, 1910)
207. G.W. Mackey, Mathematical Foundations of Quantum Mechanics (Benjamin, Reading, Mass.,
1963)
208. G.W. Mackey, Induced Representations (Benjamin, Reading, Mass., 1968)
209. G.W. Mackey, Unitary Representations in Physics, Probability, and Number Theory (Benjamin, Reading, Mass., 1978)
210. N.H. March, W.H. Young, S. Sampanthar, The Many-Body Problem in Quantum Mechanics
(Cambridge University Press, Cambridge, 1967)
211. L. Markus, K.R. Meyer, Generic Hamiltonian Dynamical Systems are Neither Integrable nor
Ergodic. Memoirs of AMS, Number 144 (Providence, Rhode Island, 1974)
212. C.M. Marle, in Bifurcation Theory, Mechanics and Physics, ed. by C.P. Bruter, A. Aragnol,
A. Lichnerowicz (D. Reidel, Dordrecht, Boston, Lancaster, 1983)
213. J.E. Marsden, Geometric Methods in Mathematical Physics. LNM 775 (Springer, New York,
1980)
214. J.E. Marsden, T.S. Ratiu, Introduction to Mechanics and Symmetry (Springer, New York,
1999)
215. J.E. Marsden, M. McCracken, The Hopf Bifurcation and its Applications (Springer, New York,
1976)
216. N.D. Mermin, Rev. Mod. Phys. 65, 803–815 (1993)
217. A. Messiah: Quantum Mechanics (Russ. transl. from French) (Nauka, Moscow, 1978)
218. P.A. Meyer: Probability and Potentials (Blaisdell Pub. Co., Waltham, Mass., Toronto, London,
1966)
219. B. Mielnik, Commun. Math. Phys. 37, 221–256 (1974)
220. D. Montgomery, L. Zippin, Ann. Math. 56, 213–241 (1952)
221. G. Morchio, F. Strocchi, Commun. Math. Phys. 99, 153 (1985)
222. G. Morchio, F. Strocchi: J. Math. Phys. 28, (1987) 622; F. Strocchi , Long-range dynamics
and spontaneous symmetry breaking in many-body systems, preprint ISAS-Trieste, 1987
