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Математические методы квантовой физики - Глимм Дж.

Глимм Дж., Джаффе А. Математические методы квантовой физики — Меркурий , 2000. — 451 c.
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which obey the Lee-Yang theorem, Comm. Math. Phys. 41, 1-9.
Литература 425
Newman, С. (1975b). Gaussian correlation inequalities for ferromagnets,
Z. fur.
Wahrscheinlichkeitstheorie ?3, 75-93.
Newman, C. (1975c). Moment inequalities for ferromagnetic Gibbs
distributions, J.
Math. Phys. 16, 1956-1959.
Newman, C. (1976a). Classifying general Ising models In: Mathematics
Methods of Quantum Field Theory, Paris: Editions du Centre National de la
Recherche Scientifique.
Newman, C. (1976b). Rigorous results for general Ising ferromagnets, J.
Slat. Phys.
15, 399-406.
Newman, C. (1979a). Critical point inequalities and scaling limits, Comm.
Math. Phys. 66, 1*1-196.
Newman, C. (1979b). Short distance scaling and the maximal degree of a
field theory, Phys. Lett. В 83, 63-66.
Newman, C. (1980). Normal fluctuations and the FKG inequalities, Comm.
Math. Phys. 74, 119-128.
Newman, C. (1981). Critical point dominance in one dimension, Comm. Math.
Phys.,
79, 133-140.
Nickel, B. (1980). Hyperscaling and universality in three dimensions. (To
appear.)
Nickel, B. (1981). The problem of confluent singularities, In :
Proceedings of the 1980 Cargese Summer School on Phase Transitions,
London: Plenum Press.
Nicolai, H. (1978). An inequality for Fermion systems, Comm. Math. Phys.
59, 71-78.
Osipov, E. P. (1977). Connection between the spectrum condition and the
Lorentz invariance of the Yukawa2 quantum field theory, Comm. Math. Phys.
57, 111-116.
Osipov, E. P. (1979a). The Yukawa2 field theory: linear N, bound, locally
Fock property. Ann. rinst. Henri Poincare 30, 159-192.
Osipov, E. P. (1979b). The Yukawa2 field theory: the Matthews-Salam
formula. Ann. Tlnst. Henri Poincare 30, 193-206.
Osipov, E. P. (1980). The Yukawa2 quantum field theory: Lorentz
invariance, Ann. Phys. 125, 53-66.
Osterwalder, K. (1971). On the Hamiltonian of the cubic boson self-
interaction in four dimensional space time, Fort. Phys. 19, 43-113.
Osterwalder, K. (1973a). Duality for free bose fields, Comm. Math. Phys.
29, 1-14.
52 Osterwalder, K. (1973b). Euclidean Green's functions and Wightman
distributions In: Constructive Quantum Field Theory G. Velo and A. S.
Wightman, eds., New York: Springer-Verlag.
Osterwalder, K. (1980). Mathematical Problems in Theoretical Physics,
(Lausanne, 1979), New York: Springer.
Osterwalder, K. and Schrader, R. (1972a). Feynman-Kac formula for
Euclidean fermi and bose fields, Phys. Rev. Lett. 29, 1423-1425.
Osterwalder, K. and Schrader, R. (1972b). On the uniqueness of the energy
density in the infinite volume limit for quantum field models, Helv.
Phys. Acta 45, 746-754. ...
426 Литература
53 Osterwalder, К. and Schrader, R. (1973a). Euclidean fermi fields
and a Feynman-
Kac formula for boson-fermion models, Helv. Phys. Acta 46, 277-302.
Osterwalder, K. and Schrader, R. (1973b). Axioms for Euclidean Green's
functions.
I,-Comm. Math. Phys. 31, 83-112.
Osterwalder, K. and Schrader, R. (1975). Axioms for Euclidean Green's
functions.
II, Comm. Math. Phys. 42, 281-305.
Osterwalder, K. and Seiler, E. (1978). Gauge field theories on the
lattice, Ann'. Phys. 110, 440-471.
Osterwalder, K. and Seneor, R. (1976). A nontrivial scattering matrix for
weakly coupled Р(ф)г models, Helv. Phys. Acta 49, 525-5J5.
Ozkaynak, H. (1974). Euclidean fields for arbitrary spin particles,
Harvard University Thesis.
Paes-Leme, P. (1978). Ornstein-Zernike and analyticity properties for
classical lattice spin systems. Ann. Phys. 115, 367-387.
Park, Y. M. (1977). Convergence of lattice approximations and infinite
volume limit in the (Аф4 - аф2 - цф)г field theory, J. Math. Phys. 18,
354-366.
Park, Y. M. (1979). Lack of screening in the continuous dipole systems,
Comm.
Math. Phys. 70, 161-167.
Peierls, R. (1936). Ising's model of ferromagnetism, Proc. Cambridge
Philos. Soc. 32, 477-481.
Percus, J- (1975). Correlation inequalities for Ising spin lattices,
Comm. Math. Phys.
40, 283-308.
Percus, J. (1977). One-dimensional Ising model in arbitrary external
field, J. Stat. Phys. 299-309.
54 Pirogov, S. A. and Sinai, Ya. G. (1974). Phase transitions of the
first kind for small
perturbations of the Ising model, Funct. Anal. Appl. 8, 21-25.
55 Pirogov, S. A. and Sinai, Ya. G. (1975). Phase diagrams
of classical lattice systems,
Theor. Mat. fiz. 25, 358-369, (Eng. translation: Theor. Math. Phys. 25;
1185-1192).
56 Pirogov, S. A. and Sinai, Ya. G. (1976). Phase diagrams
of classical lattice systems.
Continuation, Theor. Mat. Fix. 26, 61-76 (Eng. translation: Theor.
Math. Phys.
26, 39-49).
Polyakov, A. M. (1975). Compact gauge fields and the infrared
catastrophe, Phys. Lett. В 59, 82-84.
Polyakov, A. M. (1977). Quark confinement and topology of gauge theories,
Nucl.
Phys. В 120, 429-458.
Powers, R. and Stormer, E. (1970). Free states of the canonical
anticommutation relations, Comm. Math. Phys. 16, 1-33.
Preston, C. (1974). A generalization of the FKG inequalities, Comm. Math.
Предыдущая << 1 .. 170 171 172 173 174 175 < 176 > 177 178 179 180 181 182 .. 187 >> Следующая

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