4,738 research outputs found

    On matrices for which norm bounds are attained

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    Let ∥A∥p,q\|A\|_{p,q} be the norm induced on the matrix AA with nn rows and mm columns by the H\"older ℓp\ell_p and ℓq\ell_q norms on RnR^n and RmR^m (or CnC^n and CmC^m), respectively. It is easy to find an upper bound for the ratio ∥A∥r,s/∥A∥p,q\|A\|_{r,s}/\|A\|_{p,q}. In this paper we study the classes of matrices for which the upper bound is attained. We shall show that for fixed AA, attainment of the bound depends only on the signs of r−pr-p and s−qs-q. Various criteria depending on these signs are obtained. For the special case p=q=2p=q=2, the set of all matrices for which the bound is attained is generated by means of singular value decompositions

    Partial norms and the convergence of general products of matrices

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    Motivated by the theory of inhomogeneous Markov chains, we determine a sufficient condition for the convergence to 0 of a general product formed from a sequence of real or complex matrices. When the matrices have a common invariant subspace HH, we give a sufficient condition for the convergence to 0 on HH of a general product. Our result is applied to obtain a condition for the weak ergodicity of an inhomogeneous Markov chain. We compare various types of contractions which may be defined for a single matrix, such as paracontraction, ll--contraction, and HH--contraction, where HH is an invariant subspace of the matrix

    CSR expansions of matrix powers in max algebra

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    We study the behavior of max-algebraic powers of a reducible nonnegative n by n matrix A. We show that for t>3n^2, the powers A^t can be expanded in max-algebraic powers of the form CS^tR, where C and R are extracted from columns and rows of certain Kleene stars and S is diadonally similar to a Boolean matrix. We study the properties of individual terms and show that all terms, for a given t>3n^2, can be found in O(n^4 log n) operations. We show that the powers have a well-defined ultimate behavior, where certain terms are totally or partially suppressed, thus leading to ultimate CS^tR terms and the corresponding ultimate expansion. We apply this expansion to the question whether {A^ty, t>0} is ultimately linear periodic for each starting vector y, showing that this question can be also answered in O(n^4 log n) time. We give examples illustrating our main results.Comment: 25 pages, minor corrections, added 3 illustration

    Electronic Dynamics Due to Exchange Interaction with Holes in Bulk GaAs

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    We present an investigation of electron-spin dynamics in p-doped bulk GaAs due to the electron-hole exchange interaction, aka the Bir-Aronov-Pikus mechanism. We discuss under which conditions a spin relaxation times for this mechanism is, in principle, accessible to experimental techniques, in particular to 2-photon photoemission, but also Faraday/Kerr effect measurements. We give numerical results for the spin relaxation time for a range of p-doping densities and temperatures. We then go beyond the relaxation time approximation and calculate numerically the spin-dependent electron dynamics by including the spin-flip electron-hole exchange scattering and spin-conserving carrier Coulomb scattering at the level of Boltzmann scattering integrals. We show that the electronic dynamics deviates from the simple spin-relaxation dynamics for electrons excited at high energies where the thermalization does not take place faster than the spin relaxation time. We also present a derivation of the influence of screening on the electron-hole exchange scattering and conclude that it can be neglected for the case of GaAs, but may become important for narrow-gap semiconductors.Comment: 14 pages, 5 figures, formatted using SPIE templat
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