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References:
[1] David Carlson: Inequalities for the Degrees of Elementary Divisiors of Modules. Lin. Algebra and Appl. 5 (1972), 293-298. DOI 10.1016/0024-3795(72)90010-9 | MR 0304398
[2] A. J. Hoffman, J. B. Kruskal: Integral Boundary Points of Convex Polyhedra, Linear Inequalities and Related Systems. Princeton, New Jersey, 1956. MR 0085148
[3] A. Horn: Doubly Stochastic Matrices and the Diagonal of a Rotation Matrix. Amer. J. of Math. LXXVI (1954), 620-630, Theorem 5. DOI 10.2307/2372705 | MR 0063336 | Zbl 0055.24601
[4] A. Horn: On the Eigenvalues of a Matrix with Prescribed Singular Values. Proc. Amer. Math. Soc. 5 (1954), 4-7. DOI 10.1090/S0002-9939-1954-0061573-6 | MR 0061573 | Zbl 0055.00908
[5] Ky Fan, G. Pall: Imbedding Conditions for Hermitian and Normal Matrices. Can. J. of Math. 9 (1957), 298-304. DOI 10.4153/CJM-1957-036-1 | MR 0085216 | Zbl 0077.24504
[6] Morris Newman: Integral Matrices. Academic Press, New York, 1972. MR 0340283
[7] E. Marques de Sá: Imbedding Conditions for $\lambda$-Matrices. Lin. Algebra and Appl. 24 (1979), 33-50. DOI 10.1016/0024-3795(79)90145-9 | MR 0524824 | Zbl 0395.15009
[8] R. C. Thompson: Interlacing Inequalities for Invariant Factors. Lin. Algebra and Appl. 24 (1979), 1-32. DOI 10.1016/0024-3795(79)90144-7 | MR 0524823 | Zbl 0395.15003
[9] H. Weyl: Inequalities Between the Two Kinds of Eigenvalues of a Linear Transformation. Proc. Nat. Acad. Sci. U.S.A. 35 (1949), 401-411. DOI 10.1073/pnas.35.7.408 | MR 0030693 | Zbl 0032.38701
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