1. Ma, Y. G., S. Sahebdivan, C. K. Ong, T. Tyc, and U. Leonhardt, "Evidence for subwavelength imaging with positive refraction," New J. Phys., Vol. 13, No. 3, 033016, 2011.
doi:10.1088/1367-2630/13/3/033016
2. Ma, Y. G., C. K. Ong, S. Sahebdivan, T. Tyc, and U. Leonhardt, "Perfect imaging without negative refraction for microwaves," Physics Optics, arXiv: 1007.2530, 2010.
3. Leonhardt, U., "Perfect imaging without negative refraction," New J. Phys., Vol. 11, No. 9, 093040, 2009.
doi:10.1088/1367-2630/11/9/093040
4. Blaikie, R. J., "Comment on ‘perfect imaging without negative refraction'," New J. Phys., Vol. 12, No. 5, 058001, 2010.
doi:10.1088/1367-2630/12/5/058001
5. Blaikie, R. J., "Perfect imaging without refraction?," New J. Phys., Vol. 13, No. 12, 125006, 2011.
doi:10.1088/1367-2630/13/12/125006
6. Leonhardt, U., "Reply to comment on ‘perfect imaging without negative refraction’," New J. Phys., Vol. 12, No. 5, 058002, 2010.
doi:10.1088/1367-2630/12/5/058002
7. Kinsler, P. and A. Favaro, "Comment on ‘reply to comment on ‘perfect imaging without negative refraction”," New J. Phys., Vol. 13, No. 2, 028001, 2011.
doi:10.1088/1367-2630/13/2/028001
8. Leonhardt, U., "Reply to comment on ‘perfect imaging without negative refraction’," New J. Phys., Vol. 13, No. 2, 028002, 2011.
doi:10.1088/1367-2630/13/2/028002
9. Tyc, T. and A. Danner, "Resolution of Maxwell’s fisheye with an optimal active drain," New J. Phys., Vol. 16, No. 6, 063001, 2014.
doi:10.1088/1367-2630/16/6/063001
10. Sun, F. and S. He, "Can Maxwell’s fish eye lens really give perfect imaging?," Progress In Electromagnetics Research, Vol. 108, 307-322, 2010.
doi:10.2528/PIER10091003
11. Sun, F., X. C. Ge, and S. He, "Can Maxwell’s fish eye lens really give perfect imaging? Part II. The case with passive drains," Progress In Electromagnetics Research, Vol. 110, 313-328, 2010.
doi:10.2528/PIER10110313
12. Leonhardt, U. and T. G. Philbin, "Perfect imaging with positive refraction in three dimensions," Phys. Rev. A, Vol. 81, No. 1, 011804, 2010.
doi:10.1103/PhysRevA.81.011804
13. Merlin, R., "Comment on ‘perfect imaging with positive refraction in three dimensions’," Phys. Rev. A, Vol. 82, No. 5, 057801, 2010.
doi:10.1103/PhysRevA.82.057801
14. Leonhardt, U. and T. G. Philbin, "Reply to ‘comment on ‘perfect imaging with positive refraction in three dimensions”," Phys. Rev. A, Vol. 82, No. 5, 057802, 2010.
doi:10.1103/PhysRevA.82.057802
15. Merlin, R., "Maxwell’s fish-eye lens and the mirage of perfect imaging," J. Opt., Vol. 13, No. 2, 024017, 2011.
doi:10.1088/2040-8978/13/2/024017
16. Zhang, X., "Perfect lenses in focus," Nature, Vol. 480, No. 7375, 42-43, 2011.
doi:10.1038/480042a
17. Quevedo-Teruel, O., R. C. Mitchell-Thomas, and Y. Hao, "Frequency dependence and passive drains in fish-eye lenses," Phys. Rev. A, Vol. 86, No. 5, 053817, 2012.
doi:10.1103/PhysRevA.86.053817
18. Ma, Y., T.Wu, and C. K. Ong, "Subwavelength drains designed for mirror-closed dielectric lenses," J. Opt., Vol. 15, No. 12, 125705, 2013.
doi:10.1088/2040-8978/15/12/125705
19. Gonzalez, J. C., P. Ben´ıtez, and J. C. Minano, "Perfect drain for the Maxwell fish eye lens," New J. Opt., Vol. 15, No. 12, 125705, 2013.
doi:10.1088/2040-8978/15/12/125705
19. Gonzalez, J. C., P. Ben´ıtez, and J. C. Minano, "Perfect drain for the Maxwell fish eye lens," New J. Phys., Vol. 13, No. 2, 023038, 2011.
doi:10.1088/1367-2630/13/2/023038
20. Xu, L. and H. Chen, "Coherent perfect absorber makes a perfect drain for Maxwell’s fish-eye lens," EPL, Vol. 100, No. 3, 34001, 2012.
doi:10.1209/0295-5075/100/34001
21. Minano, J. C., P. Benıtez, and J. C. Gonzalez, "Perfect imaging with geodesic waveguides," New J. Phys., Vol. 12, No. 12, 123023, 2010.
doi:10.1088/1367-2630/12/12/123023
22. Minano, J. C., R. Marqu´es, J. C. Gonz´alez, P. Ben´ıtez, V. Delgado, D. Grabovickic, and M. Freire, "Super-resolution for a point source better than λ/500 using positive refraction," New J. Phys., Vol. 13, No. 12, 125009, 2011.
doi:10.1088/1367-2630/13/12/125009
23. Gonzalez, J. C., D. Grabovickic, P. Benıtez, and J. C. Minano, "Circuital model for the spherical geodesic waveguide perfect drain," New J. Phys., Vol. 14, No. 8, 083033, 2012.
doi:10.1088/1367-2630/14/8/083033
24. Minano, J. C., J. Sanchez-Dehesa, J. C. Gonzalez, P. Benıtez, D. Grabovickic, J. Carbonell, and H. Ahmadpanahi, "Experimental evidence of super-resolution better than λ/105 with positive refraction," New J. Phys., Vol. 16, No. 3, 033015, 2014.
doi:10.1088/1367-2630/16/3/033015
25. Born, M. and E. Wolf, Principles of Optics, 6th edition, Cambridge University Pres, Cambridge, 1998.
26. Leonhardt, U., S. Sahebdivan, A. Kogan, and T. Tyc, "A simple model explaining super-resolution in absolute optical instruments," New J. Phys., Vol. 17, No. 5, 053007, 2015.
doi:10.1088/1367-2630/17/5/053007
27. Heintzmann, R. and C. Cremer, "Laterally modulated excitation microscopy: Improvement of resolution by using a diffraction grating," Proc. SPIE, Vol. 3568, 185-195, 1998.
28. Dunn, R. C., "Near-field scanning optical microscopy," Chemical Rev., Vol. 99, No. 10, 2891-2928, 1999.
doi:10.1021/cr980130e
29. Lerosey, G., J. De Rosny, A. Tourin, and M. Fink, "Focusing beyond the diffraction limit with far-field time reversal," Science, Vol. 315, No. 5815, 1120-1122, 2007.
doi:10.1126/science.1134824
30. Neice, A., "Methods and limitations of subwavelength imaging," Advances in Imaging and Electron Physics, Vol. 163, 117-140, 2010.
doi:10.1016/S1076-5670(10)63003-0