TY - JOUR
T1 - The effective theory of long strings
AU - Aharony, Ofer
AU - Komargodski, Zohar
N1 - Israel Science Foundation center for excellence grant; Israel-U.S. Binational Science Foundation; German-Israeli Foundation (GIF) for Scientific Research and Development; Rosa and Emilio Segre research award; Minerva foundation; Federal German Ministry for Education and Research; IBM Einstein Fellowship at the Institute for Advanced Study; NSF [PHY-0969448]; Peter Gruber Award; Patricia Gruber Award; Robert Rees Fund for Applied Research; Israel Science Foundation [884/11]; United States-Israel Binational Science Foundation (BSF) [2010/629]We are very grateful to A. Schwimmer for collaboration at various stages of this work, and for numerous useful comments. We would like to thank N. Berkovits, B. Bringoltz, M. Caselle, M. Dodelson, S. Dubovsky, M. Field, R. Flauger, F. Gliozzi, V. Gorbenko, M. Green, E. Karzbrun, N. Klinghoffer, D. Kutasov, J. Maldacena, V. P. Nair, J. Polchinski, N. Seiberg, M. Teper, A. Tseytlin, V. Vyas, and E. Witten for useful discussions. OA would like to thank the Strings 2009 conference in Rome, and the ECT* workshop on "Confining flux tubes and strings" at Trento, for inviting him to present preliminary versions of these results. OA is the Samuel Sebba Professorial Chair of Pure and Applied Physics. The work of OA was supported in part by an Israel Science Foundation center for excellence grant, by the Israel-U.S. Binational Science Foundation, by the German-Israeli Foundation (GIF) for Scientific Research and Development, by a grant from Rosa and Emilio Segre research award, and by the Minerva foundation with funding from the Federal German Ministry for Education and Research. OA gratefully acknowledges support from an IBM Einstein Fellowship at the Institute for Advanced Study. ZK was supported by NSF grant PHY-0969448, a research grant from Peter and Patricia Gruber Awards, a grant from Rosa and Emilio Segre research award, a grant from the Robert Rees Fund for Applied Research, and by the Israel Science Foundation under grant num
PY - 2013
Y1 - 2013
N2 - We present the low-energy effective theory on long strings in quantum field theory, including a streamlined review of previous literature on the subject. Such long strings can appear in the form of solitonic strings, as in the 4d Abelian Higgs model, or in the form of confining strings, as in Yang-Mills theories. The bottom line is that upon expanding in powers of 1/L the energy levels of long (closed) strings (where L is the length of the string), all the terms up to (and including) order 1/L 5 are universal. We argue that for excited strings in D > 3 space-time dimensions there is a universal deviation at order 1/L 5 from the naive formula that is usually used to fit lattice results. For D = 3 this naive formula is valid even at order 1/L 5. At order 1/L 7 non-universal terms generically appear in all cases. We explain the physical origin of these results, and illuminate them in three different formulations of the effective action of long strings (the relationships among which we partly clarify). In addition, we corroborate these results by an explicit computation of the effective action on long strings in confining theories which have a gravitational dual. These predictions can be tested by precise simulations of 4d Yang-Mills theory on the lattice.
AB - We present the low-energy effective theory on long strings in quantum field theory, including a streamlined review of previous literature on the subject. Such long strings can appear in the form of solitonic strings, as in the 4d Abelian Higgs model, or in the form of confining strings, as in Yang-Mills theories. The bottom line is that upon expanding in powers of 1/L the energy levels of long (closed) strings (where L is the length of the string), all the terms up to (and including) order 1/L 5 are universal. We argue that for excited strings in D > 3 space-time dimensions there is a universal deviation at order 1/L 5 from the naive formula that is usually used to fit lattice results. For D = 3 this naive formula is valid even at order 1/L 5. At order 1/L 7 non-universal terms generically appear in all cases. We explain the physical origin of these results, and illuminate them in three different formulations of the effective action of long strings (the relationships among which we partly clarify). In addition, we corroborate these results by an explicit computation of the effective action on long strings in confining theories which have a gravitational dual. These predictions can be tested by precise simulations of 4d Yang-Mills theory on the lattice.
UR - https://www.scopus.com/pages/publications/84878920790
U2 - 10.1007/JHEP05(2013)118
DO - 10.1007/JHEP05(2013)118
M3 - Article
SN - 1126-6708
VL - 2013
JO - Journal of High Energy Physics
JF - Journal of High Energy Physics
IS - 5
M1 - 118
ER -