(1) Y. M. Xu, Y. B. Huang, X. Y. Cui, R. Elia, M. Radovic, M. Shi, G. F. Chen, P. Zheng, N. L. Wang, P. C. Dai, J. P. Hu, Z. Wang, H. Ding, “Observation of a ubiquitous three-dimensional superconducting gap function in optimally-doped Ba0.6K0.4Fe2As2”, Nature Physics 7, 198 (2011)
(2) Y. M. Xu, P. Richard, K. Nakayama, T. Kawahara, Y. Sekiba, T. Qian, M. Neupane, S. Souma, T. Sato, T. Takahashi, H. Luo, H. H. Wen, G. F. Chen, N. L. Wang, Z. Wang, Z. Fang, X. Dai, H. Ding, “Fermi surface dichotomy of superconducting gap and pseudogap in underdoped pnictides”, Nature Communications 2, 392 (2011)
(3) T. Qian, X. P. Wang, W. C. Jin, P. Zhang, P. Richard, G. Xu, X. Dai, Z. Fang, J. G. Guo, X. L. Chen, and H. Ding, “Absence of holelike Fermi surface in superconducting K0.8Fe1.7Se2 revealed by angle-resolved photoemission spectroscopy”, Physical Review Letters 106, 187001(2011)
(4) Y. Okada, C. Dhital, W. W. Zhou, E. D. Huemiller, H. Lin, S. Basak, A. Bansil, Y. B. Huang, H. Ding, Z. Wang, S. D. Wilson, and V. Madhavan, “Direct Observation of Broken Time-Reversal Symmetry on the Surface of a Magnetically Doped Topological Insulator”, Physical Review Letters 106, 206805 (2011)
(5) K. Nakayama, T. Sato, Y. M. Xu, Z. H. Pan, P. Richard, H. Ding, H. H. Wen, K. Kudo, T. Sasaki, N. Kobayashi, and T. Takahashi, “Two pseudogaps with different energy scales at the antinode of the high-temperature Bi2Sr2CuO6 superconductor using angle-resolved photoemission spectroscopy”, Physical Review B 83, 224509 (2011)
(6) K. Nakayama, T. Sato, P. Richard, Y. M. Xu, T. Kawahara, K. Umezawa, T. Qian, M. Neupane, G. F. Chen, H. Ding, T. Takahashi, “Universality of superconducting gaps in overdoped Ba0.3K0.7Fe2As2 observed by angle-resolved photoemission spectroscopy”, Physical Review B 83, 020501(R) (2011)
(7) T. Qian, N. Xu, Y. B. Shi, K. Nakayama, P. Richard, T. Kawahara, T. Sato, T. Takahashi, M. Neupane, Y. M. Xu, X. P. Wang, G. Xu, X. Dai, Z. Fang, P. Cheng, H. H. Wen, H. Ding, “Fermiology of Sr4V2O6Fe2As2: Quasi-Nested Fe vs Mott-Insulating V Orbitals”, Physical Review B 83, 140513(R) (2011)
(8) Z. H. Liu, P. Richard, K. Nakayama, G. F. Chen, S. Dong, J. B. He, D. M. Wang, T. L. Xia, K. Umezawa, T. Kawahara, S. Souma, T. Sato, T. Takahashi, T. Qian, Y. B. Huang, N. Xu, Y. B. Shi, H. Ding, S. C. Wang, “Unconventional superconducting gap in NaFe0.95Co0.05As observed by ARPES”, Physical Review B 84, 064519 (2011)
(9) M. Neupane, P. Richard, Y. M. Xu, K. Nakayama, T. Sato, T. Takahashi, A. V. Fedorov, G. Xu, X. Dai, Z. Fang, Z. Wang, G. F. Chen, N. L. Wang, H. H. Wen, H. Ding, “Electron-hole asymmetry in the superconductivity of doped BaFe2As2 seen via the rigid chemical-potential shift in photoemission”, Physical Review B 83, 094522 (2011)
(10) P. Richard, T. Sato, K. Nakayama, T. Takahashi, H. Ding, “Fe-based superconductors: an angle-resolved photoemission spectroscopy perspective”, Report on Progress in Physics 74, 124512 (2011) (Review article)
(11) H. Ding, K. Nakayama, P. Richard, S. Souma, T. Sato, T. Takahashi, M. Neupane, Y. M. Xu, Z. H. Pan, A. V. Federov, Z. Wang, X. Dai, Z. Fang, G. F. Chen, J. L. Luo, and N. L. Wang, “Electronic structure of optimally doped pnictide Ba0.6K0.4Fe2As2: a comprehensive angle- resolved photoemission spectroscopy investigation”, Journal of Physics: condensed matter 23, 135701(2011)
(12) X. P. Wang, T. Qian, P. Richard, P. Zhang, J. Dong, H. D. Wang, C. H. Dong, M. H. Fang and H. Ding, “Strong nodeless pairing on separate electron Fermi surface sheets in (Tl, K)Fe1.78Se2 probed by ARPES”, EPL 93, 57001(2011)
(13) P. Zhang, P. Richard, T. Qian, Y. M. Xu, X. Dai, and H. Ding, “A precise method for visualizing dispersive features in image plots”, Review of Scientific Instruments 82, 043712 (2011)