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99. La Guardia, G.G.: On negacyclic MDS-convolutional codes. Linear Algebra Appl. 448, 85–96
(2014)
100. La Guardia, G.G.: On the construction of nonbinary quantum BCH codes. IEEE Trans. Inf.
Theory 60, 1528–1535 (2014)
101. La Guardia, G.G.: On optimal constacyclic codes. Linear Algebra Appl. 496, 594–610 (2016)
102. La Guardia, G.G.: Asymmetric quantum convolutional codes. Quantum Inf. Process. 15,
167–183 (2016)
103. La Guardia, G.G.: Quantum codes derived from cyclic codes. Int. J. Theor. Phys. 56, 2479–
2484 (2017)
104. La Guardia, G.G., Alves, M.M.S.: On cyclotomic cosets and code constructions. Linear Algebra Appl. 488, 302–319 (2016)
105. La Guardia, G.G., Palazzo Jr., R.: Constructions of new families of nonbinary CSS codes.
Discret. Math. 310, 2935–2945 (2010)
106. La Guardia, G.G., Pereira, F.R.F.: Good and asymptotically good quantum codes derived from
algebraic geometry. Quantum Inf. Process. 16, 1–12 (2017)
107. Lee, L.N.: Short unit-memory byte-oriented binary convolutional codes having maximum
free distance. IEEE Trans. Inf. Theory 22, 349–352 (1976)
108. Li, R., Li, X.: Binary construction of quantum codes of minimum distances five and six.
Discret. Math. 308, 1603–1611 (2008)
109. Li, S., Xiong, M., Ge, G.: Pseudo-cyclic codes and the construction of quantum MDS codes.
IEEE Trans. Inf. Theory 62, 1703–1710 (2016)
110. Lidl, R., Niederreiter, H.: Finite Fields. Cambridge University Press, Cambridge (1997)
111. Ling, S., Luo, J., Xing, C.: Generalization of Steane’s enlargement construction of quantum
codes and applications. IEEE Trans. Inf. Theory 56, 4080–4084 (2010)
112. Lipschutz, S., Lipson, M.L.: Linear Algebra. McGraw-Hill Companies, New York (2009)
113. Ma, Z., Lu, X., Feng, K., Feng, D.: On non-binary quantum BCH codes. Lect. Notes Comput.
Sci. 3959, 675–683 (2006)
114. MacWilliams, F.J., Sloane, N.J.A.: The Theory of Error-Correcting Codes. North-Holland
(1977)
115. Mandelbaum, D.M.: Two applications of cyclotomic cosets to certain BCH codes. IEEE Trans.
Inf. Theory 26, 737–738 (1980)
116. Martin, F.J.P., Curto, J.I., Sotelo, G.S.: On the construction of 1-D MDS convolutional Goppa
codes. IEEE Trans. Inf. Theory 59, 4615–4625 (2013)
117. Matsumoto, R.: Improvement of Ashikhmin-Litsyn-Tsfasman bound for quantum codes.
IEEE Trans. Inf. Theory 48, 2122–2124 (2002)
118. Munkres, J.R.: Topology. Prentice Hall Inc., New Jersey (2000)
119. Munuera, C., Tenorio, W., Torres, F.: Quantum error-correcting codes from algebraic geometry
codes of castle type. Quantum Inf. Process. 15, 4071–4088 (2016)
120. Niederreiter, H., Xing, C.: Algebraic Geometry in Coding Theory and Cryptography. Princeton
University Press, Princeton, New Jersey (2009)
121. Nielsen, M.A., Chuang, I.L.: Quantum Computation and Quantum Information. Cambridge
University Press, Cambridge (2000)
122. Nigg, D., Müller, M., Martinez, E.A., Schindler, P., Hennrich, M., Monz, T., Martin-Delgado,
M.A., Blatt, R.: Quantum computations on a topologically encoded qubit. Science 345, 302–
305 (2014)
123. Ollivier, H., Tillich, J.-P.: Description of a quantum convolutional code. Phys. Rev. Lett. 91,
1–4 (2003)
124. Ollivier H., Tillich J.-P. (2004) Quantum convolutional codes: fundamentals. In: arXiv. https://
arxiv.org/pdf/quant-ph/0401134.pdf. Accesses 20 March 2018
125. Ozbudak, F., Stichtenoth, H.: Constructing codes from algebraic curves. IEEE Trans. Inf.
Theory 45, 2502–2505 (1999)
