JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, (8). Fitzpatrick, A. L., Kachru, S., Kaplan, J., & Raghu, S. (2013). Join Facebook to connect with Shamit Kachru and others you may know. INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 19(16), 2657–2704. Hook, A., Kachru, S., Torroba, G., & Wang, H. (2014). Complex/symplectic mirrors. PHYSICAL REVIEW D, 61(2). My education in this subject has been facilitated ... the elliptic genus of a SCFT defined above transforms nicely under the group SL2(Z) n Z2. Berkeley in 1997. JOURNAL OF HIGH ENERGY PHYSICS, (4). Sequestering in string theory. Kachru, S., McGreevy, J., & Svrcek, P. (2006). 4D conformal field theories and strings on orbifolds, Non-perturbative results on the point particle limit of N=2 heterotic string compactifications. Rev. Professor of Physics and Director, Stanford Institute for Theoretical Physics, Simons Investigator Award, Simons Foundation (2017 -), Packard Fellow, David and Lucile Packard Foundation (2000-2005), Bergmann Memorial Award, Israeli Science Foundation (1999), Sloan Fellow, Sloan Foundation (1998-2000), Outstanding Junior Investigator, Department of Energy (1997-99), Scientific Advisory Committee, Kavli Institute for Theoretical Science (KITS), Beijing (2019 - Present), Editorial Board, Research in Mathematical Sciences (2015 - Present), Scientific Advisory Committee, Perimeter Institute (2015 - 2019), Advisory Board, Kavli Institute for Theoretical Physics (KITP), Santa Barbara (2014 - 2017), External Organizer, ICTP Spring School (2007 - 2010), Member, Aspen Center for Physics (2006 - 2015), External Organizer, TASI 1999, 2005, 2007 (1999 - 2007), Ph.D., Princeton University, Physics (1994), A.B., Harvard University, Physics (1990), Stanford Institute for Theoretical Physics, Boards, Advisory Committees, Professional Organizations, Kavli Institute for Particle Astrophysics and Cosmology (KIPAC), Geballe Laboratory for Advanced Materials (GLAM). JOURNAL OF HIGH ENERGY PHYSICS, (6). Letters in Mathematical Physics, 107(11). modular group that preserves the form of the BC. A maximally supersymmetric Kondo model. Most previous analyses have considered only the effects of sources near to the inflationary D3-brane, but in fact distant sources do not generically decouple and can critically influence the dynamics during inflation. Christoph Keller, Rutgers University. Following post-doctoral research in the Harvard Society of Fellows and at Rutgers, he joined the faculty at U.C. Aharony, O., Berkooz, M., Kachru, S., Silverstein, E. Self-dual nonsupersymmetric type II string compactifications, School of Earth, Energy and Environmental Sciences, Freeman Spogli Institute for International Studies, Institute for Computational and Mathematical Engineering (ICME), Institute for Human-Centered Artificial Intelligence (HAI), Institute for Stem Cell Biology and Regenerative Medicine, Stanford Institute for Economic Policy Research (SIEPR), Stanford Woods Institute for the Environment, Office of VP for University Human Resources, Office of Vice President for Business Affairs and Chief Financial Officer, Partial Differential Equations of Mathematical Physics, DOI 10.1146/annurev.nucl.57.090506.123042. Shamit Kachru Stanford & SLAC Indian Strings Meeting 2014 Thursday, December 18, 14. Group 2: Pictured from left to right are Chiara Nappi (Princeton University), Steven Gubser (Princeton University), Edward Witten (IAS), Herman Verlinde (Princeton University), Juan Maldacena (IAS), Kenneth Intriligator (UC-San Diego) and Shamit Kachru (Stanford University). I would characterize my research programs in these three areas as being in the fledgling stage, relatively recently established, and well developed, respectively.It is hard to know what the future holds, but you can get some idea of the kinds of things I work on by looking at my past. (2000). CiteSeerX - Document Details (Isaac Councill, Lee Giles, Pradeep Teregowda): We point out that the matrix description of M-theory compacti ed on Calabi-Yau threefolds is in many respects simpler than the matrix description of a T 6 compacti cation. JOURNAL OF HIGH ENERGY PHYSICS, (10). JOURNAL OF HIGH ENERGY PHYSICS, (2). By Shamit Kachru, Albrecht Klemm, Yaron Oz and Ernest Orlando Lawrence Berkeley. Kachru, S., Karch, A., & Yaida, S. (2010). JOURNAL OF PHYSICS A-MATHEMATICAL AND THEORETICAL, 48(49). The IIA duals are Calabi-Yau orbifolds with nontrivial RR U(1) backgrounds turned on. PHYSICAL REVIEW D, 62(8). Interpolating from Bianchi attractors to Lifshitz and AdS spacetimes. Video: Mikhail Tikhonov - “Microbial ecology as a new frontier for theoretical physics” (Stanford Physics/Applied Physics colloquium) Beyond discreteness: "species" in the microbial world. JOURNAL OF HIGH ENERGY PHYSICS, (6). Bouncing brane cosmologies from warped string compactifications. Cheng, M. C. N., Dong, X., Duncan, J. F. R., Harvey, J. Lectures on warped compactifications and stringy brane constructions. Benjamin, N., Cheng, M. C. N., Kachru, S., Moore, G. W., & Paquette, N. M. (2016). PHYSICAL REVIEW B, 92(4). Aharony, O., Kachru, S., & Silverstein, E. (2007). Holographic systematics of D-brane inflation. Effective field theory of fractional quantized Hall nematics. JOURNAL OF HIGH ENERGY PHYSICS, (5). Brandon Rayhaun is part of Stanford Profiles, official site for faculty, postdocs, students and staff information (Expertise, Bio, Research, Publications, and more). Most of classical ecology relies on the assumption that … Gorlich, L., Tripathy, P. K., Trivedi, S. P., & Kachru, S. (2004). Isotropic to anisotropic transition in a fractional quantum Hall state. Kachru, S., & Vafa, C. (1995). Goldstein, K., Iizuka, N., Kachru, S., Prakash, S., Trivedi, S. P., Westphal, A. Isotropic to anisotropic transition in a fractional quantum Hall state, Effects of Compactification in D-brane Inflation. PHYSICAL REVIEW D, 81(2). DeWolfe, O., Verlinde, H., & Kachru, S. (2004). Baumann, D., Dymarsky, A., Kachru, S., Klebanov, I. R., & McAllister, L. (2010). הצטרף/י לפייסבוק כדי ליצור קשר עם ‏‎Shamit Kachru‎‏ ועם אנשים אחרים שאת/ה עשוי/ה להכיר. I too would hope Shamit Kachru would post a long detailed reply somewhere. Bianchi attractors: a classification of extremal black brane geometries. Tension is dimension. DeWolfe, O., Giryavets, A., Kachru, S., & Taylor, W. (2005). Enumerating flux vacua with enhanced symmetries. PHYSICAL REVIEW D, 81(7). Self-tuning flat domain walls in 5D gravity and string theory. ANNALES HENRI POINCARE, 17(10), 2663–97. Supersymmetric three-cycles and (super)symmetry breaking. Kachru, S., Katz, S., Lawrence, A., McGreevy, J. Bounds on curved domain walls in 5D gravity, Self-tuning flat domain walls in 5D gravity and string theory, Open string instantons and superpotentials, Orientifolds, renormalization-group flows and closed string tachyons. 2 NATHAN BENJAMIN 1, SHAMIT KACHRU , KEN ONO2, AND LARRY ROLEN3 Speci cally, this means that D 0;1 (mod 4), and that Dis square-free if D 1 (mod 4) and D=4 is a square free number congruent to 2 or 3 modulo 4. Jensen, K., Kachru, S., Karch, A., Polchinski, J., Silverstein, E. Effective field theory of fractional quantized Hall nematics, Generalized attractor points in gauged supergravity, Holography of dyonic dilaton black branes. Baumann, D., Dymarsky, A., Kachru, S., Klebanov, I. R., & McAllister, L. (2010). Kachru, S., Kallosh, R., Linde, A., & Trivedi, S. P. (2003). Hertzberg, M. P., Kachru, S., Taylor, W., Tegmark, M. Searching for inflation in simple string theory models: An astrophysical perspective. We provide a systematic method for incorporating the effects of arbitrary distant sources as perturbations to the local supergravity background. Hertzberg, M. P., Kachru, S., Taylor, W., & Tegmark, M. (2007). Aharony, O., & Kachru, S. (2007). Diaconescu, E., Florea, B., Kachru, S., Svrcek, P. Fixing all moduli in a simple F-theory compactification. Giryavets, A., Kachru, S., & Tripathy, P. K. (2004). OpenURL . PHYSICAL REVIEW D, 68(4). Giddings, S. B., Kachru, S., & Polchinski, J. Mahajan, R., Ramirez, D. M., Kachru, S., Raghu, S. Mathieu moonshine and N=2 string compactifications. Harrison, S., Kachru, S., & Wang, H. (2014). Harrison, S., Kachru, S., & Torroba, G. (2012). (2002). My present research interests include mathematical and computational studies of evolutionary dynamics; field theoretic condensed matter physics, including study of non-Fermi liquids and fracton phases; and mathematical aspects of string theory. Abstract. Blumenhagen, R., Cvetic, M., Kachru, S., Weigand, T. Dimopoulos, S., Kachru, S., McGreevy, J., Wacker, J. G. Geometric transitions and dynamical SUSY breaking, Gravity dual of metastable dynamical supersymmetry breaking, Meta-stable vacua and d-branes at the conifold. Kachru, S., Klemm, A., Lerche, W., Mayr, P., Vafa, C. EXACT RESULTS FOR N=2 COMPACTIFICATIONS OF HETEROTIC STRINGS, Counting spinning dyons in maximal supergravity: The Hodge-elliptic genus for tori. Inflationary constraints on type IIA string theory. Getting to Stanford Twining genera of (0,4) supersymmetric sigma models on K3. Fitzpatrick, A. L., Kachru, S., Kaplan, J., & Raghu, S. (2014). Hertzberg, M. P., Tegmark, M., Kachru, S., Shelton, J., Oezcan, O. Metastable vacua and D-branes at the conifold, Stringy instantons and quiver gauge theories. Keller, C., & Kachru, S. ( 2007 ) ( 14 ), Mathematical,! Tripathy, P., Kachru, S. ( 2007 ) 2d CFT and 3d gravity Stanford & SLAC Indian Meeting... H. non-fermi-liquid behavior OF large-N-B quantum critical metals quantum effects involved in the Harvard Society OF Fellows at... 17 ( 10 ) ( 6 ), Torroba, G., &,. Dyer, E., Fitzpatrick, A., & Silverstein, E. ( )! Flat domain walls in 5D gravity and string theory 57, 119–44 jensen,,! J is being generated by a partition function OF a non-supersymmetric field theory from Bianchi attractors a..., 274 ( 3 ), 1–24 involved in the stabilization OF the BC Via group! 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