[2] H. Campos, P. Catarino, A. P. Aires, P. Vasco and A. Borges, On some identities of k-Jacobsthal-Lucas Numbers, International Journal of Mathematical Analysis 8 (10) (2014), 489-494.10.12988/ijma.2014.4249
[4] P. Catarino, P. Vasco, A. Borges, H. Campos, A. P. Aires, Sums, Products and identities involving k-Fibonacci and k-Lucas sequences, JP J. Algebra Number Theory Appl. 32 (1) (2014), 63-77.10.17654/JPANTAFeb2014_063_077
[9] S. Falcón, On the generating matrices of the k-Fibonacci numbers, Proyecciones Journal of Mathematics 32 (4) (2013) 347-357.10.4067/S0716-09172013000400004
[13] D. Jhala, K. Sisodiya and G. P. S. Rathore, On some Identities for k-Jacobsthal Numbers, Int. Journal of Math. Analysis 7 (12) (2013), 551-556.10.12988/ijma.2013.13052
[17] Ayse Nalli and Pentti Haukkanen, On generalized Fibonacci and Lucas polynomials, Chaos, Solitons and Fractals 42 (2009) 3179-3186.10.1016/j.chaos.2009.04.048
[18] W. Qu, S. L. Lei and S. W. Vong, Circulant and skew-circulant splitting iteration for fractional advection-diffusion equations, International Journal of Computer Mathematics, 91 (10) (2014), 2232-2242.10.1080/00207160.2013.871001
[19] Y. K. Wu and R. Z. Jia and Q. Li, g-circulant solutions to the (0; 1) matrix equation Am = J*n, Linear Algebra Appl. 345, 2002, 195-224.10.1016/S0024-3795(01)00491-8