Qiaoluan Li

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In this paper, we study the advanced differential equations r(t) x (t) α–1 x (t) + n i=1 p i (t) x(t + τ i (t)) α–1 x(t + τ i (t)) = 0 and r(t)(y(t) – P(t)y(t – τ)) + n i=1 p i (t)f (y(t + σ)) = 0. By using the generalized Riccati transformation and the Schauder-Tyichonoff theorem, we establish the conditions for the existence of positive solutions of the(More)
In this paper, we consider the higher order neutral nonlinear difference equation ∆(x(n) + p(n)x(τ(n))) + f1(n, x(σ1(n)))− f2(n, x(σ2(n))) = 0, ∆(x(n) + p(n)x(τ(n))) + f1(n, x(σ1(n)))− f2(n, x(σ2(n))) = g(n), ∆(x(n) + p(n)x(τ(n))) + l X i=1 bi(n)x(σi(n)) = 0. We obtain sufficient conditions for the existence of non-oscillatory solutions.
B. Abbott, M. Abolins, V. Abramov, B. S. Acharya, I. Adam, D. L. Adams, M. Adams, S. Ahn, V. Akimov, G. A. Alves, N. Amos, E. W. Anderson, M. M. Baarmand, V. V. Babintsev, L. Babukhadia, A. Baden, B. Baldin, S. Banerjee, J. Bantly, E. Barberis, P. Baringer, J. F. Bartlett, A. Belyaev, S. B. Beri, I. Bertram, V. A. Bezzubov, P. C. Bhat, V. Bhatnagar, M.(More)
We present a comprehensive analysis of inclusive W (→ eν) + n-jet (n ≥ 1, 2, 3, 4) production in proton-antiproton collisions at a center-of-mass energy of 1.96 TeV at the Tevatron collider using a 3.7 fb −1 dataset collected by the D0 detector. Differential cross sections are presented as a function of the jet rapidities (y), lepton transverse momentum(More)
We present a search for associated Higgs boson production in the process p¯ p → W/ZH → ℓ ± ℓ ′± + X in ee, eµ, and µµ final states. The search is based on data collected by the D0 experiment at the Fermilab Tevatron Collider at √ s = 1.96 TeV corresponding to 5.3 fb −1 of integrated luminosity. We require two isolated leptons (electrons or muons) with the(More)
Search for Higgs bosons of the minimal supersymmetric standard model in pp collisions at √ s = 1.96 TeV We report results from searches for neutral Higgs bosons produced in pp collisions recorded by the D0 experiment at the Fermilab Tevatron Collider. We study the production of inclusive neutral Higgs boson in the τ τ final state and in association with a b(More)
In this paper, we investigate nonoscillatory solutions of a class of higher order neutral nonlinear difference equations with positive and negative coefficients 4(x(n)+p(n)x(τ(n)))+f1(n, x(σ1(n)))−f2(n, x(σ2(n))) = 0, n ≥ n0. Some sufficient conditions for the existence of nonoscillatory solutions are obtained.
V.M. Abazov, B. Abbott, B. S. Acharya, M. Adams, T. Adams, J. P. Agnew, G. D. Alexeev, G. Alkhazov, A. Alton, A. Askew, S. Atkins, K. Augsten, V. Aushev, Y. Aushev, C. Avila, F. Badaud, L. Bagby, B. Baldin, D. V. Bandurin, S. Banerjee, E. Barberis, P. Baringer, J. F. Bartlett, U. Bassler, V. Bazterra, A. Bean, M. Begalli, L. Bellantoni, S. B. Beri, G.(More)