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References

Published online by Cambridge University Press:  05 September 2015

Horaƫiu Năstase
Affiliation:
Instituto de Física Teórica, Universidade Estadual Paulista, São Paulo
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References

[1] M. E., Peskin and D. V., Schroeder, An Introduction to Quantum Field Theory, Perseus Books, 1995.Google Scholar
[2] Steven, Weinberg, The Quantum Theory of Fields, vols. 1,2,3, Cambridge University Press, 1995, 1996, and 2000.Google Scholar
[3] P. J. E., Peebles, Principles of Physical Cosmology, Princeton University Press, 1993.Google Scholar
[4] C. W., Misner, K. S., Thorne, and J. A., Wheeler, Gravitation, W. H., Freeman and Co., 1970.
[5] L. D., Landau and E. M., Lifshitz, Mechanics, Butterworth-Heinemann, 1982.Google Scholar
[6] R. M., Wald, General Relativity, University of Chicago Press, 1984.Google Scholar
[7] S. V., Ketov, Fortsch. Phys. 45, 237 (1997) [hep-th/9611209].
[8] L., Alvarez-Gaume and S. F., Hassan, Fortsch. Phys. 45, 159 (1997) [hep-th/9701069].
[9] P., West, Introduction to Supersymmetry and Supergravity, World Scientific, 1990.Google Scholar
[10] J., Wess and J., Bagger, Supersymmetry and Supergravity, Princeton University Press, 1992.Google Scholar
[11] S. J., Gates, M. T., Grisaru, M., Rocek, and W., Siegel, hep-th/0108200.
[12] M., Dine, Supersymmetry and String Theory, Beyond the Standard Model, Cambridge University Press, 2007.Google Scholar
[13] P. van, Nieuwenhuizen, Les Houches 1983, Proceedings, “Relativity, groups and topology II,” p. 823.
[14] P. Van, Nieuwenhuizen, Phys. Rept. 68, 189 (1981).
[15] D. Z., Freedman and A. van, Proeyen, Supergravity, Cambridge University Press, 2012.Google Scholar
[16] M. J., Duff, B. E. W., Nilsson, and C. N., Pope, Phys. Rept. 130, 1 (1986).
[17] S. W., Hawking and G. F. R., Ellis, The Large Scale Structure of Space–Time, Cambridge University Press, 1973.Google Scholar
[18] M. J., Duff, R. R., Khuri, and J. X., Lu, Phys. Rept. 259, 213 (1995) [hep-th/9412184].
[19] A. A., Tseytlin, Nucl. Phys. B 475, 149 (1996) [hep-th/9604035].
[20] M., Cvetic and A. A., Tseytlin, Nucl. Phys. B 478, 181 (1996) [hep-th/9606033].
[21] B.|Zwiebach, A First Course in String Theory, Cambridge University Press, 2004.
[22] M. B., Green, J. H., Schwarz, and E., Witten, Superstring Theory, vols. 1 and 2, Cambridge University Press, 1987.Google Scholar
[23] Joseph, Polchinski, String Theory, vols. 1 and 2, Cambridge University Press, 1998.Google Scholar
[24] K., Becker, M., Becker, and J. H., Schwarz, String Theory and M-theory, Cambridge University Press, 2007.Google Scholar
[25] Clifford, Johnson, D-branes, Cambridge University Press, 2003.Google Scholar
[26] O., Aharony, S. S., Gubser, J. M., Maldacena, H., Ooguri, and Y., Oz, Phys. Rept. 323, 183 (2000) [hep-th/9905111].
[27] J., Dai, R. G., Leigh, and J., Polchinski, Mod. Phys. Lett. A 4, 2073 (1989).
[28] J., Polchinski, Phys. Rev. Lett. 75, 4724 (1995) [hep-th/9510017].
[29] E., D'Hoker and D. Z., Freedman, hep-th/0201253.
[30] J. M., Maldacena, Adv. Theor. Math. Phys. 2, 231 (1998) [hep-th/9711200].
[31] S. S., Gubser, I. R., Klebanov, and A. M., Polyakov, Phys. Lett. B 428, 105 (1998) [hep-th/9802109].
[32] E., Witten, Adv. Theor. Math. Phys. 2, 253 (1998) [hep-th/9802150].
[33] H. J., Kim, L. J., Romans, and P. van, Nieuwenhuizen, Phys. Rev. D 32, 389 (1985).
[34] B. de, Wit and H., Nicolai, Nucl. Phys. B 243, 91 (1984); B. de Wit, H. Nicolai, and N. P. Warner, Nucl. Phys. B 255, 29 (1985); B. de Wit and H. Nicolai, Nucl. Phys. B 274, 363 (1986); B. de Wit and H. Nicolai, Nucl. Phys. B 281, 211 (1987).
[35] H., Năstase, D., Vaman, and P. van, Nieuwenhuizen, Phys. Lett. B 469, 96 (1999) [hep-th/9905075].
[36] H., Năstase, D., Vaman, and P. van, Nieuwenhuizen, Nucl. Phys. B 581 (2000) 179 [hep-th/9911238].
[37] W., Mueck and K. S., Viswanathan, Phys. Rev. D 58, 041901 (1998) [hep-th/9804035].
[38] D. Z., Freedman, S. D., Mathur, A., Matusis, and L., Rastelli, Nucl. Phys. B 546, 96 (1999) [hep-th/9804058].
[39] G., Chalmers, H., Năstase, K., Schalm, and R., Siebelink, Nucl. Phys. B 540, 247 (1999) [hep-th/9805105].
[40] A., Smilga, Lectures on Quantum Chromodynamics, World Scientific, 2001.Google Scholar
[41] J. M., Maldacena, Phys. Rev. Lett. 80, 4859 (1998) [hep-th/9803002].
[42] S. -J., Rey and J. -T., Yee, Eur. Phys. J. C 22, 379 (2001) [hep-th/9803001].
[43] E., Witten, Adv. Theor. Math. Phys. 2, 505 (1998) [hep-th/9803131].
[44] J., Polchinski and M. J., Strassler, Phys. Rev. Lett. 88, 031601 (2002) [hep-th/0109174].
[45] D. E., Berenstein, J. M., Maldacena, and H. S., Năstase, JHEP 0204, 013 (2002) [hep-th/0202021].
[46] J. C., Plefka, Fortsch. Phys. 52, 264 (2004) [hep-th/0307101].
[47] J., Kowalski-Glikman, Phys. Lett. B 134, 194 (1984).
[48] P. C., Aichelburg and R. U., Sexl, Gen. Rel. Grav. 2, 303 (1971).
[49] G. T., Horowitz and A. R., Steif, Phys. Rev. Lett. 64, 260 (1990).
[50] R., Penrose, Any spacetime has a plane wave as a limit, Differential Geometry and Relativity, Reidel, Dordrecht, 1976, pp. 271–275.Google Scholar
[51] M., Blau, J. M., Figueroa-O'Farrill, C., Hull, and G., Papadopoulos, JHEP 0201, 047 (2002) [hep-th/0110242].
[52] M., Blau, J. M., Figueroa-O'Farrill, C., Hull, and G., Papadopoulos, Class. Quant. Grav. 19, L87 (2002) [hep-th/0201081].
[53] J. A., Minahan and K., Zarembo, JHEP 0303, 013 (2003) [hep-th/0212208].
[54] J., Plefka, Living Rev. Rel. 8, 9 (2005) [hep-th/0507136].
[55] K.|Zarembo, Comptes Rendus Physique 5, 1081 (2004) [Fortsch. Phys. 53, 647 (2005)] [hep-th/0411191].
[56] E., Witten, Nucl. Phys. B 443, 85 (1995) [hep-th/9503124].
[57] S. B., Giddings, Phys. Rev. D 67, 126001 (2003) [hep-th/0203004].
[58] K., Kang and H., Năstase, Phys. Rev. D 72, 106003 (2005) [hep-th/0410173].
[59] K., Kang and H., Năstase, Phys. Lett. B 624, 125 (2005) [hep-th/0501038].
[60] J., Polchinski and M. J., Strassler, hep-th/0003136.
[61] I. R., Klebanov and M. J., Strassler, JHEP 0008, 052 (2000) [hep-th/0007191].
[62] J. M., Maldacena and C., Nunez, Phys. Rev. Lett. 86, 588 (2001) [hep-th/0008001].
[63] J. M., Maldacena and H. S., Năstase, JHEP 0109, 024 (2001) [hep-th/0105049].
[64] T., Sakai and S., Sugimoto, Prog. Theor. Phys. 113, 843 (2005) [hep-th/0412141].
[65] V., Balasubramanian, P., Kraus, A. E., Lawrence, and S. P., Trivedi, Phys. Rev. D 59, 104021 (1999) [hep-th/9808017].
[66] V., Balasubramanian, P., Kraus, and A. E., Lawrence, Phys. Rev. D 59, 046003 (1999) [hep-th/9805171].
[67] S. B., Giddings, Phys. Rev. D 61, 106008 (2000) [hep-th/9907129].
[68] E., Witten, JHEP 9807, 006 (1998) [hep-th/9805112].
[69] S. A., Hartnoll and P., Kovtun, Phys. Rev. D 76, 066001 (2007) [arXiv:0704.1160 [hep-th]].
[70] E., D'Hoker and P., Kraus, JHEP 0910, 088 (2009) [arXiv:0908.3875 [hep-th]].
[71] S. A., Hartnoll, Class. Quant. Grav. 26, 224002 (2009) [arXiv:0903.3246 [hep-th]].
[72] J., Casalderrey-Solana, H., Liu, D., Mateos, K., Rajagopal, and U. A., Wiedemann, arXiv:1101.0618 [hep-th].
[73] H., Liu, K., Rajagopal, and U. A., Wiedemann, Phys. Rev. Lett. 97, 182301 (2006) [hep-ph/0605178].
[74] H., Năstase, hep-th/0501068.
[75] S. S., Gubser, S. S., Pufu, and A., Yarom, Phys. Rev. D 78, 066014 (2008) [arXiv:0805.1551 [hep-th]].
[76] O., Aharony, A., Fayyazuddin, and J. M., Maldacena, JHEP 9807, 013 (1998) [hep-th/9806159].
[77] D. E., Berenstein, E., Gava, J. M., Maldacena, K. S., Narain, and H. S., Năstase, hepth/0203249.
[78] O., Aharony, O., Bergman, D. L., Jafferis, and J., Maldacena, JHEP 0810, 091 (2008) [arXiv:0806.1218 [hep-th]].
[79] S., Mukhi and C., Papageorgakis, JHEP 0805, 085 (2008) [arXiv:0803.3218 [hep-th]].
[80] H., Năstase, C., Papageorgakis, and S., Ramgoolam, JHEP 0905, 123 (2009) [arXiv:0903.3966 [hep-th]].
[81] H., Năstase and C., Papageorgakis, JHEP 0912, 049 (2009) [arXiv:0908.3263 [hep-th]].
[82] X., Chu, H., Năstase, B. E. W., Nilsson, and C., Papageorgakis, JHEP 1104, 040 (2011) [arXiv:1012.5969 [hep-th]].
[83] J., Gomis, D., Rodriguez-Gomez, M. Van, Raamsdonk, and H., Verlinde, JHEP 0809, 113 (2008) [arXiv:0807.1074 [hep-th]].
[84] C., Csaki, H., Ooguri, Y., Oz, and J., Terning, JHEP 9901, 017 (1999) [hep-th/9806021].
[85] A., Karch and E., Katz, JHEP 0206, 043 (2002) [hep-th/0205236].
[86] K., Skenderis, Class. Quant. Grav. 19, 5849 (2002) [hep-th/0209067].
[87] M., Henningson and K., Skenderis, JHEP 9807, 023 (1998) [hep-th/9806087].
[88] D. Z., Freedman, S. S., Gubser, K., Pilch, and N. P., Warner, Adv. Theor. Math. Phys. 3, 363 (1999) [hep-th/9904017].
[89] R. C., Myers and A., Sinha, JHEP 1101, 125 (2011) [arXiv:1011.5819 [hep-th]].
[90] Z., Komargodski and A., Schwimmer, JHEP 1112, 099 (2011) [arXiv:1107.3987 [hep-th]].
[91] D., Astefanesei, H., Năstase, H., Yavartanoo, and S., Yun, JHEP 0804, 074 (2008) [arXiv:0711.0036 [hep-th]].
[92] J., Erlich, E., Katz, D. T., Son, and M. A., Stephanov, Phys. Rev. Lett. 95, 261602 (2005) [hep-ph/0501128].
[93] A., Karch, E., Katz, D. T., Son, and M. A., Stephanov, Phys. Rev. D 74, 015005 (2006) [hep-ph/0602229].
[94] U., Gursoy and E., Kiritsis, JHEP 0802, 032 (2008) [arXiv:0707.1324 [hep-th]].
[95] S., Kachru, X., Liu, and M., Mulligan, Phys. Rev. D 78, 106005 (2008) [arXiv:0808.1725 [hep-th]].
[96] D. T., Son, Phys. Rev. D 78, 046003 (2008) [arXiv:0804.3972 [hep-th]].
[97] K., Balasubramanian and J., McGreevy, Phys. Rev. Lett. 101, 061601 (2008) [arXiv:0804.4053 [hep-th]].
[98] T., Griffin, P., Horava, and C. M., Melby-Thompson, Phys. Rev. Lett. 110, 081602 (2013) [arXiv:1211.4872 [hep-th]].
[99] C. P., Herzog, M., Rangamani, and S. F., Ross, JHEP 0811, 080 (2008) [arXiv:0807.1099 [hep-th]].
[100] A., Adams, K., Balasubramanian, and J., McGreevy, JHEP 0811, 059 (2008) [arXiv:0807.1111 [hep-th]].
[101] J., Maldacena, D., Martelli, and Y., Tachikawa, JHEP 0810, 072 (2008) [arXiv:0807.1100 [hep-th]].
[102] S. A., Hartnoll, C. P., Herzog, and G. T., Horowitz, Phys. Rev. Lett. 101, 031601 (2008) [arXiv:0803.3295 [hep-th]].
[103] P., Kovtun, J. Phys. A 45, 473001 (2012) [arXiv:1205.5040 [hep-th]].
[104] D. T., Son and A. O., Starinets, JHEP 0209, 042 (2002) [hep-th/0205051].
[105] G., Policastro, D. T., Son, and A. O., Starinets, Phys. Rev. Lett. 87, 081601 (2001) [hep-th/0104066].
[106] P., Kovtun, D. T., Son, and A. O., Starinets, Phys. Rev. Lett. 94, 111601 (2005) [hepth/0405231].
[107] S. S., Gubser, Phys. Rev. D 78, 065034 (2008) [arXiv:0801.2977 [hep-th]].
[108] R. C., Myers, S., Sachdev, and A., Singh, Phys. Rev. D 83, 066017 (2011) [arXiv:1010.0443 [hep-th]].
[109] S., Sachdev, Ann. Rev. Condensed Matter Phys. 3, 9 (2012) [arXiv:1108.1197 [condmat.str-el]].
[110] A., Mohammed, J., Murugan, and H., Năstase, Phys. Rev. Lett. 109, 181601 (2012) [arXiv:1205.5833 [hep-th]].
[111] N., Iqbal, H., Liu, and M., Mezei, arXiv:1110.3814 [hep-th].
[112] C. P., Herzog, J. Phys. A 42, 343001 (2009) [arXiv:0904.1975 [hep-th]].
[113] J., McGreevy, Adv. High Energy Phys. 2010, 723105 (2010) [arXiv:0909.0518 [hep-th]].
[114] L. F., Alday and J. M., Maldacena, JHEP 0706, 064 (2007) [arXiv:0705.0303 [hep-th]].
[115] E. I., Buchbinder, Phys. Lett. B 654, 46 (2007) [arXiv:0706.2015 [hep-th]].
[116] N., Berkovits and J., Maldacena, JHEP 0809, 062 (2008) [arXiv:0807.3196 [hep-th]].
[117] S., Ryu and T., Takayanagi, Phys. Rev. Lett. 96, 181602 (2006) [hep-th/0603001].
[118] T., Nishioka, S., Ryu, and T., Takayanagi, J. Phys. A 42, 504008 (2009) [arXiv:0905.0932 [hep-th]].

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  • References
  • Horaƫiu Năstase
  • Book: Introduction to the AdS/CFT Correspondence
  • Online publication: 05 September 2015
  • Chapter DOI: https://doi.org/10.1017/CBO9781316090954.030
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  • References
  • Horaƫiu Năstase
  • Book: Introduction to the AdS/CFT Correspondence
  • Online publication: 05 September 2015
  • Chapter DOI: https://doi.org/10.1017/CBO9781316090954.030
Available formats
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Save book to Google Drive

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  • References
  • Horaƫiu Năstase
  • Book: Introduction to the AdS/CFT Correspondence
  • Online publication: 05 September 2015
  • Chapter DOI: https://doi.org/10.1017/CBO9781316090954.030
Available formats
×