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The L(c, n) numbers and their application in the theory of waveguides

机译:L(c,n)数及其在波导理论中的应用

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The theorem for existence and for the basic properties of the L(c, n) numbers (positive real numbers, coherent with the positive purely imaginary zeros zetak, n (c) in x of the complex Kummer confluent hypergeometric function Phi(a, c; x) with a = c/2 - jk - complex, c - real, (c ne l, l = 0, -1, -2, -3,...), k - real, x = jz, z - real, positive and n = 1, 2, 3,...), is formulated and proved numerically. It is composed of three lemmas. Lemmas 1 and 2 demonstrate the existence of quantities and determine them in case c ne l and c = l (in which Phi(a, c; x) is not defined) as the common limits of the couples of infinite sequences of positive real numbers {K_(c, n, k)_)} and {M_(c, n, k_)}, (K_(c, n, k_) = |k_|zetak_, n (c), M_(c, n, k_) = |a_|zetak_, n (c) for k_ rarr -infin, and {L(l - epsiv, n)} and {L(l + epsiv, n + 1)}, (epsiv - infinitesimal positive real number) for epsiv rarr 0, resp. (The subscript ldquo-rdquo indicates quantities, corresponding to negative k.) Lemma 3 reveals the main features of the numbers (recurrence relation, formula for symmetry and bond of some of them with the Ludolphian number). Tables and graphs illustrate the influence of parameters c and n on L(c, n). The benefit of numbers is manifested in the theory of azimuthally magnetized circular ferrite waveguides, propagating normal TE0n modes.
机译:L(c,n)数(正实数,与正纯虚数零点zeta k, n (c)在复杂的Kummer融合超几何函数Phi(a,c; x)的x中,其中a = c / 2-jk-复数,c-实数,(c ne l,l = 0,- 1,-2,-3,...),k-实数,x = jz,z-实数,正数,n = 1,2,3,...),公式化并通过数值证明。它由三个引理组成。引理1和2证明了数量的存在,并在c ne l和c = l(其中Phi(a,c; x)未定义)的情况下确定数量,作为正实数无穷序列对的共同极限{K_(c,n,k)_)}和{M_(c,n,k _)},(K_(c,n,k_)= | k_ | zeta k _, n (c),M_(c,n,k_)= | a_ | zeta k _, n ( c)对于k_ rarr -infin,{{(L(l-epsiv,n)}}和{L(l + epsiv,n + 1)},(epsiv-无穷小正实数)对于epsiv rarr 0, (下标ldquo表示数量,对应于负k。)引理3揭示了数字的主要特征(递归关系,对称性公式以及其中一些与鲁道夫数的键)。参数c和n对L(c,n)的影响。数字的好处体现在方位磁化圆形铁氧体波导理论中,传播了正常的TE 0n 模。

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