Abstract

All numerical results in Sections 3.B–3.E of our paper [1] were obtained with L=0.75λ0 and L1=0.5L. We regret that these data had been inadvertently left out from the paper.

REFERENCE

1. D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012). [CrossRef]  

References

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  1. D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012).
    [CrossRef]

2012 (1)

D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012).
[CrossRef]

Faryad, M.

D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012).
[CrossRef]

Lakhtakia, A.

D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012).
[CrossRef]

Pulsifer, D. P.

D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012).
[CrossRef]

J. Opt. Soc. Am. B (1)

D. P. Pulsifer, M. Faryad, and A. Lakhtakia, “Grating-coupled excitation of Tamm waves,” J. Opt. Soc. Am. B 29, 2260–2269 (2012).
[CrossRef]

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