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首页> 外文期刊>The journal of high energy physics >Asymptotic growth of the 4d N documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ mathcal{N} $$end{document} = 4 index and partially deconfined phases
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Asymptotic growth of the 4d N documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ mathcal{N} $$end{document} = 4 index and partially deconfined phases

机译:4D <替代品> n documentClass [12pt] {minimal} usepackage {ammath} usepackage {isysym} usepackage {amsfonts} usepackage {amssymb} usepackage {amsbsy} usepackage {mathrsfs} usepackage {supmeek} setLength { oddsidemargin} {-69pt} begin {document} $$$ nathcal {n} $$ nath {document} = 4索引和部分折垃圾阶段

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A bstract We study the Cardy-like asymptotics of the 4d N documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ mathcal{N} $$end{document} = 4 index and demonstrate the existence of partially deconfined phases where the asymptotic growth of the index is not as rapid as in the fully deconfined case. We then take the large- N limit after the Cardy-like limit and make a conjecture for the leading asymptotics of the index. While the Cardy-like behavior is derived using the integral representation of the index, we demonstrate how the same results can be obtained using the Bethe ansatz type approach as well. In doing so, we discover new non-standard solutions to the elliptic Bethe ansatz equations including continuous families of solutions for SU( N ) theory with N ≥ 3. We argue that the existence of both standard and continuous non-standard solutions has a natural interpretation in terms of vacua of N documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ mathcal{N} $$end{document} = 1~( ? )theory on ?~(3) × S ~(1).
机译:Bstract我们研究了4D n documentClass [12pt]的核心渐近学[12pt] {minimal} usepackage {ammath} usepackage {isysym} usepackage {amssymb} usepackage {amsbsy} usepackage {mathrsfs } {usepackage upgreek} setlength { oddsidemargin} { - 69pt} {开始文档} $$ mathcal {N} $$ {端文档} = 4索引和演示部分deconfined相的存在,其中渐进生长该指数并不像完全欺骗案例中那么迅速。然后我们在贲门上的限制后取得了大量限制,并对指数的主要渐近学进行猜想。虽然使用索引的积分表示导出了核心样行为,但我们也可以使用Bethe Ansatz类型方法来获得相同的结果。在这样做时,我们发现椭圆贝尔ansatz方程的新的非标准解决方案,包括苏(n)理论的连续族,N≥3.我们认为标准和连续的非标准解决方案的存在具有自然的解释的N 的DocumentClass的vacua方面[12磅] {最小} usepackage {amsmath} usepackage {wasysym} usepackage {amsfonts} usepackage {amssymb} usepackage {amsbsy} usepackage {mathrsfs} usepackage {upgreek} setLength { oddsidemargin} { - 69pt} begin {document} $$$ nathcal {n} $$ end {document} = 1〜(?)理论在?〜(3)×s〜(1)。

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