1996
DOI: 10.1016/0550-3213(95)00555-2
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Four-dimensional string/ string/ string triality

Abstract: In six spacetime dimensions, the heterotic string is dual to a Type IIA string. On further toroidal compactification to four spacetime dimensions, the heterotic string acquires an SL(2, Z) S strong/weak coupling duality and an SL(2, Z) T × SL(2, Z) U target space duality acting on the dilaton/axion, complex Kahler form and the complex structure fields S, T, U respectively. Strong/weak duality in D = 6 interchanges the roles of S and T in D = 4 yielding a Type IIA string with fields T, S, U. This suggests the e… Show more

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Cited by 279 publications
(566 citation statements)
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“…The poles at t = − 1 t k come from the factor A + and so we assume this matrix to be of the form 15) and…”
Section: Generalization Of Bm Method: Residues Of Rank Rmentioning
confidence: 99%
“…The poles at t = − 1 t k come from the factor A + and so we assume this matrix to be of the form 15) and…”
Section: Generalization Of Bm Method: Residues Of Rank Rmentioning
confidence: 99%
“…The first can be achieved in heterotic or Type II string, with M 4 = T 6 in heterotic and M 4 = K 3 × T 2 in Type II theory. These theories are known to be dual at a non perturbative level [18], [19], [20]. N = 8 corresponds to M 8 = T 6 in Type II.…”
Section: Relations To String Theoriesmentioning
confidence: 99%
“…1.2 1/2 BPS states with Q 2 = −2, 0 1/2 BPS states with Q 2 = −2 have N R = 0 and are the only states that can lead to gauge symmetry enhancement [54,55,30,31]. Since Q = (n, m, r) = 0, these states are generically massive as M 2 BP S = |p L | 2 ≥ 0.…”
Section: Perturbative Bps States In Toroidal Compactificationsmentioning
confidence: 99%