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The pion Form Factor from Lattice QCD

van der Heide, J.

Publication date

2004

Link to publication

Citation for published version (APA):

van der Heide, J. (2004). The pion Form Factor from Lattice QCD.

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[1] C. Itzykson and J. B. Zuber, Quantum Field Theory (McGraw-Hill, 1980). [2] M. E. Peskin and D. V. Schroeder, An Introduction to Quantum Field Theory

(Addison-Wesley, 1995).

[3] L. H. Ryder, Quantum Field Theory (Cambridge, UK: Univ. Pr., 1985). [4] K. Barad, M. Ogilvie, and C. Rebbi, Phys. Lett. B143, 222 (1984). [5] G. Martinelli and C. T. Sachrajda, Nucl. Phys. B306, 865 (1988). [6] W. Wilcox and R. M. Woloshyn, Phys. Rev. D32, 3282 (1985). [7] R. M. Woloshyn and A. M. Kobos, Phys. Rev. D 3 3 , 222 (1986). [8] R. M. Woloshyn, Phys. Rev. D34, 605 (1986).

[9] T. Draper, R. M. Woloshyn, W. Wilcox, and K.-F. Liu, Nucl. Phys. Proc. Suppl. 9, 175 (1989).

[10] T. Draper, R. M. Woloshyn, W. Wilcox, and K.-F. Liu, Nucl. Phys. B318, 319 (1989).

[11] J. C. Collins and M. J. Perry, Phys. Rev. Lett. 34, 1353 (1975). [12] B. A. Freedman and L. D. McLerran, Phys. Rev. D16, 1169 (1977). [13] G. Chapline and M. Nauenberg, Phys. Rev. D16, 450 (1977). [14] R. Hagedorn, Nuovo Cim. Suppl. 3, 147 (1965).

[15] C. Y. Wong, Introduction to High-Energy Heavy Ion Collisions (Singapore: World Scientific, 1994).

[16] R. C. Hwa and X. N. Wang, editors, Quark-gluon plasma. Vol. 3 (River Edge, USA: World Scientific, 2004).

[17] F. Karsch and E. Laermann, (2003), hep-lat/0305025, Published in *Quark gluon plasma III, Hwa, R.C. (ed.) et al* 1-59.

[18] M. Schmelling, (1996), hep-ex/9701002, Published in ICHEP 96:91-102 (QCD161:H51:1996).

(3)

[19] J. Smit, Introduction to quantum fields on a lattice: A robust mate (Cambridge Lect. Notes Phys., 2002).

[20 [21 [22 [23 [24 [25 [26 [27 [28 [29 [30 [31 [32 [33 [34; [35 [36 [37 [38 [39 [40 [41

S. L. Adler and W. A. Bardeen, Phys. Rev. 182, 1517 (1969). J. S. Bell and R. Jackiw, Nuovo Cim. A60, 47 (1969).

M. C. Birse, T. D. Cohen, and J. A. McGovern, Phys. Lett. B399, 263 (1997), hep-ph/9701408, and references therein.

L. H. Karsten and J. Smit, Nucl. Phys. B183, 103 (1981).

H. J. Rothe, Lattice gauge theories: An introduction (World Scientific Publ., 1997).

R. Gupta, (1997), hep-lat/9807028, Published in *Les Houches 1997, Probing the standard model of particle interactions, Pt. 2* 83-219.

H. B. Nielsen and M. Ninomiya, Phys. Lett. B105, 219 (1981). J. B. Kogut and L. Susskind, Phys. Rev. D l l , 395 (1975). K. G. Wilson, Phys. Rev. D10, 2445 (1974).

D. B. Kaplan, Phys. Lett. B288, 342 (1992), hep-lat/9206013. Y. Shamir, Nucl. Phys. B406, 90 (1993), hep-lat/9303005. P. H. Ginsparg and K. G. Wilson, Phys. Rev. D25, 2649 (1982). C. Gattringer, Phys. Rev. D63, 114501 (2001), hep-lat/0003005.

R. Narayanan and H. Neuberger, Nucl. Phys. B443, 305 (1995), hep-th/9411108. K. Symanzik, Nucl. Phys. B226, 187 (1983).

K. Symanzik, Nucl. Phys. B226, 205 (1983).

B. Sheikholeslami and R. Wohlert, Nucl. Phys. B259, 572 (1985). R. Wohlert, DESY 87/069, unpublished.

M. Lüscher, S. Sint, R. Sommer, P. Weisz, and U. Wolff, Nucl. Phys. B491, 323 (1997), hep-lat/9609035.

M. Lüscher, Published in Les Houches Summer School 1988:451-528. CP-PACS, S. Aoki et al., Phys. Rev. Lett. 84, 238 (2000), hep-lat/9904012. N. Metropolis, A. W. Rosenbluth, M. N. Rosenbluth, A. H. Teller, and E. Teller, J. Chem. Phys. 21, 1087 (1953).

(4)

[42] M. Creutz, Phys. Rev. D 2 1 , 2308 (1980). [43] E. Pietarinen, Nucl. Phys. B190, 349 (1981).

[44] N. Cabibbo and E. Marinari, Phys. Lett. B119, 387 (1982). [45] K. Fabricius and O. Haan, Phys. Lett. B143, 459 (1984).

[46] A. D. Kennedy and B. J. Pendleton, Phys. Lett. B156, 393 (1985). [47] S. L. Adler, Phys. Rev. D 2 3 , 2901 (1981).

[48] M. Creutz, Phys. Rev. D36, 515 (1987).

[49] K. Barad, M. Ogilvie, and C. Rebbi, Ann. Phys. 168, 284 (1986).

[50] UKQCD, C. R. Allton et a/., Phys. Rev. D47, 5128 (1993), hep-lat/9303009. [51] S. Güsken et ai, Phys. Lett. B227, 266 (1989).

[52] R. Gupta, D. Daniel, and J. Grandy, Phys. Rev. D48, 3330 (1993), hep-lat/9304009.

[53] UKQCD, P. Lacock, A. McKerrell, C. Michael, I. M. Stopher, and P. W. Steph-enson, Phys. Rev. D 5 1 , 6403 (1995), hep-lat/9412079.

[54] APE, M. Albanese et al, Phys. Lett. B197, 400 (1987).

[55] G. Martinelli, C. T. Sachrajda, and A. Vladikas, Nucl. Phys. B358, 212 (1991). [56] M. Lüscher, S. Sint, R. Sommer, and H. Wittig, Nucl. Phys. B 4 9 1 , 344 (1997),

hep-lat/9611015.

[57] T. A. DeGrand and P. Rossi, Comput. Phys. Commun. 60, 211 (1990). [58] P. Schmidt, Ph.D. Thesis, Universiteit Bielefeld (2000).

[59] P. Schmidt, Diploma Thesis, Universitat Bielefeld (1996).

[60] A. Frommer, V. Hannemann, B. Nockel, T. Lippert, and K. Schilling, Int. J. Mod. Phys. C 5 , 1073 (1994), hep-lat/9404013.

[61] R. G. Edwards, U. M. Heller, and T. R. Klassen, Nucl. Phys. B517, 377 (1998), hep-lat/9711003.

[62] T. Bhattacharya, R. Gupta, W.-J. Lee, and S. R. Sharpe, Phys. Rev. D 6 3 , 074505 (2001), hep-lat/0009038.

(5)

[64] J. W. Tukey, Ann. Math. Stat. 29, 614 (1958).

[65] M. Göckeler et a/., Phys. Rev. D57, 5562 (1998), hep-lat/9707021.

[66] UKQCD, K. C. Bowler et al., Phys. Rev. D62, 054506 (2000), hep-lat/9910022. [67] S. R. Sharpe, Nucl. Phys. Proc. Suppl. 30, 213 (1993), hep-lat/9211005. [68] T. Bhattacharya, R. Gupta, G. Kilcup, and S. R. Sharpe, Phys. Rev. D 5 3 , 6486

(1996), hep-lat/9512021.

[69] D. Becirevic et al, (1998), hep-lat/9809129.

[70] B. Velikson and D. Weingarten, Nucl. Phys. B249, 433 (1985). [71] M. W. Hecht and T. A. DeGrand, Phys. Rev. D46, 2155 (1992).

[72] E. Laermann and P. Schmidt, Eur. Phys. J. C20, 541 (2001), hep-lat/0103037. [73] M.-C. Chu, M. Lissia, and J. W. Negele, Nucl. Phys. B360, 31 (1991).

[74] NA7, S. R. Amendolia et ai, Nucl. Phys. B277, 168 (1986).

[75] M. Guagnelli and R. Sommer, Nucl. Phys. Proc. Suppl. 63, 886 (1998), hep-lat/9709088.

[76] H. B. O'Connell, B. C. Pearce, A. W. Thomas, and A. G. Williams, Prog. Part. Nucl. Phys. 39, 201 (1997), hep-ph/9501251.

[77] J. Sakurai, Currents and Mesons (University of Chicago Press, 1969). [78] C. A. Dominguez, Phys. Rev. D25, 3084 (1982).

[79] C. R. Allton, V. Gimenez, L. Giusti, and F. Rapuano, Nucl. Phys. B489, 427 (1997), hep-lat/9611021.

[80] C. J. Bebek et al, Phys. Rev. D17, 1693 (1978).

[81] The Jefferson Lab F(pi), J. Volmer et al, Phys. Rev. Lett. 86, 1713 (2001), nucl-ex/0010009.

[82] J. Gasser and H. Leutwyler, Ann. Phys. 158, 142 (1984).

[83] G. Colangelo and E. Pallante, Nucl. Phys. B520, 433 (1998), hep-lat/9708005. [84] G. Colangelo, private communication, 2003.

[85] RBC, Y. Nemoto, (2003), hep-lat/0309173.

[86] C. Alexandrou, P. de Forcrand, and A. Tsapalis, Phys. Rev. D66, 094503 (2002), hep-lat/0206026.

(6)

[87] C. DeTar and J. B. Kogut, Phys. Rev. Lett. 59, 399 (1987).

[88] S. A. Gottlieb, W. Liu, D. Toussaint, R. L. Renken, and R. L. Sugar, Phys. Rev. Lett. 59, 1881 (1987).

[89] A. Gocksch, P. Rossi, and U. M. Heller, Phys. Lett. B205, 334 (1988). [90] MT(c), K. D. Born et al., Phys. Rev. Lett. 67, 302 (1991).

[91] C. W. Bernard et al, Phys. Rev. Lett. 68, 2125 (1992).

[92] G. Boyd, F. Karsch, and S. Gupta, Nucl. Phys. B385, 481 (1992). [93] S. Gupta, Phys. Lett. B288, 171 (1992).

[94] G. Boyd, S. Gupta, F. Karsch, and E. Laermann, Z. Phys. C64, 331 (1994), hep-lat/9405006.

[95] G. Boyd et al., Phys. Lett. B349, 170 (1995), hep-lat/9501029. [96] S. A. Gottlieb et al., Phys. Rev. D55, 6852 (1997), hep-lat/9612020.

[97] QCD-TARO, P. de Forcrand et al., Phys. Rev. D 6 3 , 054501 (2001), hep-lat/0008005.

[98] V. Koch, E. V. Shuryak, G. E. Brown, and A. D. Jackson, Phys. Rev. D46, 3169 (1992), hep-ph/9204236.

[99] T. Hashimoto, A. Nakamura, and I. O. Stamatescu, Nucl. Phys. B400, 267 (1993).

[100] I. Wetzorke, Ph.D. Thesis, Universiteit Bielefeld (2001).

[101] F. Karsch, E. Laermann, P. Petreczky, S. Stickan, and I. Wetzorke, Phys. Lett.

B530, 147 (2002), hep-lat/0110208.

[102] T. Umeda, K. Nomura, and H. Matsufuru, (2002), hep-lat/0211003.

[103] M. Asakawa, T. Hatsuda, and Y. Nakahara, Nucl. Phys. A715, 863 (2003), hep-lat/0208059.

[104] S. Sasaki, K. Sasaki, T. Hatsuda, and M. Asakawa, Nucl. Phys. Proc. Suppl.

119, 302 (2003), hep-lat/0209059.

[105] S. Datta, F. Karsch, P. Petreczky, and I. Wetzorke, Phys. Rev. D69, 094507 (2004), hep-lat/0312037.

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