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- 1
- O.A. Castro-Alvaredo, Perturbaciones
integrables del modelo de Wess-Zumino-Witten: modelos Split, Dipl.
thesis (1999).
- 2
- O.A. Castro-Alvaredo and J.L. Miramontes, Massive symmetric space sine-Gordon soliton theories and perturbed conformal
field theory, Nucl. Phys. B581 (2000) 643 [hep-th/0002219].
- 3
- O.A. Castro-Alvaredo, A. Fring, C. Korff and
J.L. Miramontes, Thermodynamic Bethe ansatz of the homogeneous
sine-Gordon models, Nucl.Phys. B575 (2000) 535 [hep-th/9912196].
- 4
- O.A. Castro-Alvaredo, J. Dreißig and A. Fring,
A bootstrap principle for unstable particles, in preparation.
- 5
- O.A. Castro-Alvaredo, A. Fring and C.Korff, Form factors of the homogeneous sine-Gordon models, Phys.Lett. B684
(2000) 167 [hep-th/0004089].
- 6
- O.A. Castro-Alvaredo and A. Fring, Identifying
the operator content, the homogeneous sine-Gordon models, Nucl. Phys.
B604 (2001) 367 [hep-th/0008044].
- 7
- O.A. Castro-Alvaredo and A. Fring, Renormalization group flow with unstable particles, Phys.Lett. D63
(2001) 021701 [hep-th/0008208].
- 8
- O.A. Castro-Alvaredo and A. Fring, Decoupling
the SU(N)42#42-homogeneous sine-Gordon models, Phys.Lett. D64 (2001) 085007 [hep-th/0010262].
- 9
- O.A. Castro-Alvaredo and A. Fring, Form factors
from free Fermionic Fock fields, the Federbush model, Nucl. Phys. B618 [FS] (2001) 437 [hep-th/0109212].
- 10
- O.A. Castro-Alvaredo and A. Fring,
local fields from form factors, based on talks presented at the
conferences: ``From QCD to integrable models: Old results and new
developments'', held in Amberd (Armenia), september 2001; ``APCTP-Nankai joint symposium on lattice statistics and mathematical
physics'', held in Tianjin (China), october 2001; ``ICMS-workshop on
classical and quantum integrable systems and their symmetries'', held in
Edinburgh (Scottland), december 2001, [hep-th/0112097].
- 11
- O.A. Castro-Alvaredo and A. Fring,
of locality in the form factor program, proceedings of the workshop
emph``From QCD to integrable models: Old results and new developments'', held
in Amberd (Armenia), september 2001.
- 12
- O.A. Castro-Alvaredo and A. Fring, Finite
temperature correlation functions from form factors, Nucl. Phys. B636 (2002) 611 [hep-th/0203130].
- 13
- H. Babujian , O.A. Castro-Alvaredo, A. Fring and M.
Karowski, Correlation functions from form factors, a review, in
preparation. Review article to be published in J. Phys. A.
- 14
- O.A. Castro-Alvaredo, Bootstrap methods in
1+1-dimensional quantum field theories: the homogeneous sine-Gordon models, Ph.D. thesis (2001) [hep-th/0109212].
- 15
- O.A. Castro-Alvaredo and A. Fring, Scaling
functions from q-deformed Virasoro characters, J. Phys. A35 (2002)
609 [hep-th/0103055].
- 16
- O.A. Castro-Alvaredo and A. Fring, Constructing
infinite particle spectra, Phys.Rev. D64 (2001) 085005
[hep-th/0103252].
- 17
- O.A. Castro-Alvaredo, A. Fring and F. Göhmann,
On the absence of simultaneous reflection and transmission in
integrable impurity systems, [hep-th/0201142].
- 18
- O.A. Castro-Alvaredo and A. Fring,
particles versus resonances in impurity systems, conductance in quantum
wires, [cond-mat/0112199].
- 19
- O.A. Castro-Alvaredo and A. Fring, From
integrability to conductance, impurity systems, [hep-th/0205076].
- 20
- O.A. Castro-Alvaredo and A. Fring, Conductance
from Non-perturbative Methods, parts I [cond-mat/0210599] and II
[cond-mat/0210592]. JHEP Proceedings of the workshop on ``Integrable
Theories, Solitons and Duality '', in São Paulo (Brazil), July
2002.
- 21
- O.A. Castro-Alvaredo, A. Fring and C. Figueira de
Morisson Faria, Relativistic treatment of harmonics from impurity
systems in quantum wires, [cond-mat/0208128].
- 22
- J.L. Miramontes and C.R. Fernández-Pousa, Phys. Lett. B472 (2000) 392.
- 23
- P. Weisz, Phys. Lett. B67 (1977) 179;
M. Karowski and P. Weisz, . Phys. B139 (1978) 445.
- 24
- F.A. Smirnov, Form factors in Completely
Integrable Models of Quantum Field Theory, Adv. Series in Math. Phys. 14,
(World Scientific, Singapore, 1992).
- 25
- J.L. Cardy and G. Mussardo, Phys. Lett.
B225 (1989) 275; Nucl. Phys. B340 (1990) 387.
- 26
- Al.B. Zamolodchikov, Nucl. Phys. B348 (1991) 619; A. Fring, G. Mussardo and P. Simonetti, Nucl. Phys.
B393 (1993) 413; Phys. Lett. B307 (1993) 83;
A. Koubek and G. Mussardo, Phys. Lett. B311 (1993)193.
- 27
- H. Babujian, A. Fring, M. Karowski and A. Zapletal,
Nucl. Phys. B538 [FS] (1999) 535.
- 28
- G. Delfino, P. Simonetti and J.L. Cardy, Phys.
Lett. B387 (1996) 327.
- 29
- J.L. Cardy and G. Mussardo, Nucl. Phys.
B410 (1993) 451.
- 30
- A.B. Zamolodchikov, JETP Lett. 43
(1986) 730.
- 31
- R. Kubo, Can. J. Phys. 34, (1956)
1274.
- 32
- A. LeClair, F. Lesage, S. Sachdev and H. Saleur,
Nucl. Phys. B482 [FS] (1996) 579;A. LeClair and G. Mussardo,
Nucl. Phys. B552 (1999) 624; H. Saleur, Nucl. Phys.
B567 (2000) 602; G. Delfino, J. Phys. A34 (2001)
L161; G. Mussardo, J. Phys. A34 (2001) 7399.
- 33
- V. Privman, P.C. Hohenberg and A. Aharony, Universal Critical-Point Amplitude Relations, in
emph``Phase transition
and critical phenomena'' #420#>vol. 14, C. Domb and J.L. Lebowitz eds.
(Academic Press, 1991).
- 34
- V.A. Fateev, Phys. Lett. B324
(1994) 45.
- 35
- S. Lukyanov and A.B. Zamolodchikov, Nucl. Phys. B493 (1997) 571; V.A. Fateev, S. Lukyanov, A.B.
Zamolodchikov and Al.B. Zamolodchikov, Phys. Lett. B406
(1997) 83; Nucl. Phys. B516 (1998) 652.
- 36
- P. Baseilhac, Nucl. Phys. B636
(2002) 465.
- 37
- M. Jimbo and T. Miwa, Algebraic analysis of
solvable lattice models, Regional Conference Series in Mathematics, 85 (1995); S. Khoroshkin, A. LeClair and S. Pakuliak, Adv. Theor.
Math. Phys. 3 (1999) 1227.
- 38
- C.N. Yang and C.P. Yang, Phys. Rev. 147 (1966) 303; J. Math. Phys. 10 (1969) 1115.
- 39
- Al.B. Zamolodchikov, Nucl. Phys. B342 (1990) 695; Nucl. Phys. B358 (1991) 497; Nucl.
Phys. B366 (1991) 122.
- 40
- A. Kuniba, Nucl. Phys. B389 (1993)
209; A. Kuniba and T. Nakanishi, Mod. Phys. 7 (1992) 3487;
A. Kuniba, T. Nakanishi and J. Suzuki, Mod. Phys. 8 (1993)
1649; . J. Mod. Phys. 9 (1994) 5215; Int. J. Mod.
Phys. 9 (1994) 5267.
- 41
- P. Fendley, A.W.W. Ludwig and H. Saleur,
emphPhys.
Rev. Lett. 74, 3005 (1995); Phys. Rev. B52, 8934
(1995); F. Lesage, H. Saleur and S. Skorik, Nucl. Phys B474,
602 (1996).
- 42
- R. Landauer, IBM J. Res. Dev. 1
(1957) 223; Philos. Mag. 21 (1970) 863.
- 43
- J.Cardy, Scaling and Renormalization in
Statistical Physics, Cambridge Lecture Notes in Physics (Cambridge
University Press, 1996).
- 44
- A. Fring and C.Korff, Phys. Lett. B477
(2000) 380.
- 45
- A. Fring, C.Korff and B.J. Schulz, Nucl. Phys.
B567 [FS] (2000) 409.
- 46
- T. Damour, M. Henneaux, B. Julia and H. Nicolai,
Phys. Lett. B509 (2001) 323; hep-th/0207267; H. Nicolai and
D.I. Olive,
emphLett.Math. Phys. 582001) 141;/I>.R. Gaberdiel, D.I. Olive and P.C. West,class
of Lorentzian Kac-Moody algebras, [hep-th/0205068];D.I. Olive, Duality and Lorentzian Kac-Moody Algebras, JHEP proceedings of the Workshop
on Integrable Theories, Solitons and Duality, held in São Paulo (Brazil)
in July 2002, [hep-th/0208198].
- 47
- O. Bärwald , R.W. Gebert , M. Günaydin and
H. Nicolai, Comm. Math. Phys. 195 (1998) 29.
- 48
- M. Flohr, Bits and Pieces in Logarithmic
Conformal Field Theory, lecture notes of the first School & Workshop on
Logarithmic Conformal Field Theory and its Applications, held in Tehran in
September 2001, [hep-th/0111228].
Olalla Castro
2003-05-02