基本信息

缪平  男  博导  中国科学院高能物理研究所
电子邮件: miaoping@ihep.ac.cn
通信地址: 广东省东莞市大朗镇中子源路1号
邮政编码: 523803

研究领域

研究方向: 中子散射谱仪技术;磁性材料的微观磁结构和磁激发研究;新能源材料构效关系研究

      本课题组负责设计、建设和运行中国散裂中子源高分辨中子衍射谱仪和极化非弹谱仪。此外,课题组也利用中子散射、同步辐射和缪子自旋弛豫等大科学装置研究材料的微观电磁特性。欢迎对中子散射谱仪技术及其应用研究感兴趣的博士生、硕士生和高年级本科生加入,研究背景包括但不限于物理,化学或材料专业。

招生信息

   
招生方向
中子散射,凝聚态物理

教育背景

2009-10--2014-09   日本综合研究大学院大学   博士(导师:Takashi Kamiyama)
2005-09--2009-07   中山大学   本科

工作经历



工作简历
2019-09~现在, 中科院高能物理研究所, 研究员、博士生导师,中国散裂中子源高分辨中子衍射仪负责人
2018-05~2019-08,日本高能加速器研究机构, 研究员(合作导师:Takashi Kamiyama)
2016-10~2018-04,美国德州农工大学, 博士后(合作导师:Meigan Aronson)
2014-10~2016-09,日本高能加速器研究机构, 研究员(合作导师:Takashi Kamiyama)

出版信息

发表论文 (*: 通讯作者; ‡: 共同一作):


[1]   Yajun Yue, Qifeng Zheng, Marcin Krynski, Vaclav Petricek, Fengjin Qu, Aleksandra Dziegielewska, Anucha Koedtruad, Wang Hay Kan, Stephen Hull, Marcin Malys, Franciszek Krok, Takashi Honda, Shuki Torii, Isaac Abrahams and Ping Miao*, Journal of Materials Chemistry A, https://doi.org/10.1039/D6TA00458J (2026)

[2]   Xue Wang, Lingxiang Bao, Jing-Hong Li, Tao Zhao, Libo Li, Shuki Torii, Hongwei Chen, Takashi Kamiyama, Ping Miao*, Rui-Biao Lin, Banglin Chen & Junkuo Gao, Nat. Commun. https://doi.org/ 10.1038/s41467-026-71104-9 (2026)

[3]   Guozhu Song, Jian Chen, Xiaohui Yu, Xiangliang Zheng, Xiaodong Yao, Xuefeng Zhou, Chao Gu, Qinghua Zhang, Chenglu Huang, Tiancheng Yang, Leiming Fang, Ping Miao, Lingxiang Bao, Wen Yin, Jinlong Zhu, Wei Bao, Yusheng Zhao, Er-Jia Guo, Shanmin Wang, Advanced Functional Materials, https://doi.org/10.1002/adfm.202530145 (2026)

[4]   Li Li, Dong Zhang, Zhenhong Tan, Wu Xie, Wenhai Ji, Lingxiang Bao, Ping Miao*. Comparative Study of Representation Analysis and the Magnetic Space Group for Magnetic Structures Analysis. Chinese Journal of Inorganic Analytical Chemistry, https://doi.org/10.20236/j.CJIAC.2026.04.016 (2026)

[5]   Zhenhong Tan, Zhiduo Li, Dong Zhang, Jingjing Ma, Wu Xie, Wenhai Ji, Yanyan Wu, Takashi Kamiyama, and Ping Miao*, Radial collimator with ultra-wide scattering angle coverage for high-resolution neutron diffractometer TREND, Nucl. Instrum. Methods Phys. Res. A. 1083, 171096 (2026)

[6]   Yan-Feng Wang, Li-Xin Zeng, Liang Xiao, Sheng Guo, Jing-Jing Ma, Zhen-Hong Tan, Wu Xie, Wen-Hai Ji, Ping Miao, Hai-Yun Teng, Pei-Xun Shen, Qing-Lei Xiu, Xing-Fen Jiang, Hong Xu, Xiao-Juan Zhou, Meng-Qi Jiang, Lin Zhu, Lei Hu, Jia-Jie Li, Yong-Xiang Qiu, Jian Zhuang, Yu-Bin Zhao, Yuan-Bo Chen, Jian-Rong Zhou, and Zhi-Jia Sun, Development of a large-area 3He tube array neutron detector with frequency reduction capability, Chin. Phys. B 34, 116102 (2025)

[7]   J. W. B. Li, Bryce G. Mullens, Shuki Torii, Wenhai Ji, Zhenhong Tan, Wu Xie, Takashi Kamiyama, Ping Miao*, and Brendan J. Kennedy*, A high-resolution neutron diffraction and electron diffraction study of the structure and phase transitions in AgTaO3, APL Mater. 13, 091112 (2025)

[8]   Hengheng Wu, Don Zhang, Wengen Zheng, Mengru Cong, Weijun Ren*, Fei Gao, Chin-Wei Wang, Bing Li, Ping Miao*, Zhidong Zhang, The magnetism and magnetic structure of layered compound β-DyGa3,J. Alloys Compd. 1041, 183793 (2025)

[9]   Jiajun Zhong, Dong Zhang, Hao Wang, Zhenhong Tan, Wu Xie, Wenhai Ji, Yikuna Li, Haichuan Guo, Ping Miao*, Junrong Zhang, Rong Du*, Advanced time focusing in the high-resolution neutron diffractometer at CSNS, Nucl. Instrum. Methods Phys. Res. A. 1082, 170928 (2025)

[10] Jingjing Ma,Wenhai Ji, Donghai Yu, Zhenhong Tan, Zhiduo Li, Tong Wang, Zhiyong Ke, Wen Yin, and Ping Miao*, Curved neutron beam window for large vacuum chamber of neutron diffractometer, Rev. Sci. Instrum. 96, 063305 (2025)

[11] Yanyan Wu, Wu Xie, Jingjing Ma, Dong Zhang, Hui Cheng, Zhenhong Tan, Wenhai Ji, Yuqin Yin & Ping Miao*, Design of an oscillating platform system for the high-resolution neutron diffractometer compatible with high magnetic field sample environment at the China Spallation Neutron Source, Instrumentation Science & Technology, https://doi.org/10.1080/10739149.2025.2500592 (2025)

[12] Long-Zhang Dong, Zi-Yi Liao, Ling-Xiang Bao, Ming-Chan Yang, Bo Bai, Bao Yuan, Run-Han Li, Ping Miao, Yong Yan, and Ya-Qian Lan, Modulating Adsorption Kinetics in a 3D-Interconnected Nanocavity Framework with Narrow Apertures for Enhanced Propylene Separation, J. Am. Chem. Soc. 147, 18993 (2025)

[13] Lingxiang Bao, Jing-Hong Li, Rui-Biao Lin, Jianyuan Wu, Zhenhong Tan, Wu Xie, Wenhai Ji, Dong Zhang, Anucha Koedtruad, Jingjing Ma, Wang Hay Kan, Feng Pan, Toru Ishigaki, Takashi Kamiyama, Ping Miao*, Elucidation of the CO2 adsorption mechanism of [Zn2(mtz)2(ox)] using neutron powder diffraction, Chin. Chem. Lett., 37, 110864 (2026)

[14] Bao Qiu, Yuhuan Zhou, Haoyan Liang, Minghao Zhang, Kexin Gu, Tao Zeng, Zhou Zhou, Wen Wen, Ping Miao, Lunhua He, Yinguo Xiao, Sven Burke, Zhaoping Liu & Ying Shirley Meng, Negative thermal expansion and oxygen-redox electrochemistry, Nature, 640, 941 (2025)

[15] Xiaoyu Gao, Guojie Chen, Wenqing Yao, Yongbiao Mu, Lipeng Hu, Tao Zeng, Wenguang Zhao, Zhongyuan Huang, Maolin Yang, Yuguang Pu, Wenhai Ji, Zhenhong Tan, Ping Miao, Nian Zhang, Litao Yu, Lin Zeng, Rui Wang, Yinguo Xiao, Unlocking the ultra-high capacity and cost-effectiveness of cobalt-free lithium-rich cathode materials, Energy Storage Materials, 76, 104104(2025)

[16] Mingjie Dong, Maolin Yang, Ziwei Chen, Wenguang Zhao, Zhongyuan Huang, Guojie Chen, Wenxin Tong, Sijia Chen, Wenhai Ji, Tingting Yang, Huaican Chen, Ping Miao, Wen Yin, Jun Wang, Rui Wang, Yinguo Xiao, Realizing high-capacity and low-strain manganese-based sodium cathode by regulating the doping sites of Mg with a post-doping approach, Journal of Power Sources, 623, 235391(2024)

[17] Nan Zhao, Han Ge, Tiantian Li, Fangli Li, Huanpeng Bu, Jiong Yang, Andrey A. Podlesnyak, Jieming Sheng, Ping Miao, Zhangzhen He, and Liusuo Wu, Quantum criticality in the anisotropic spin-chain antiferromagnet Ca2CoH2(SeO3)4, Phys. Rev. B, 110, (2024)

[18] W. Xie, M. Gutmann, J. W. Zhang, X. Y. Zheng, Z. Y. Shan, N. Zhao, L. S. Wu, T. Shang, M. Smidman, P. Miao, T. Takabatake, and H. Q. Yuan, Complex magnetic phase diagram in Ce3Pd6Sb5 with a well ordered superstructure, Phys. Rev. B, 110, (2024)

[19] Jieming Sheng,Jia-Wei Mei,Le Wang, Xiaoyu Xu, Wenrui Jiang, Lei Xu, Han Ge, Nan Zhao, Tiantian Li, Andrea Candini, Bin Xi, Jize Zhao, Ying Fu, Jiong Yang, Yuanzhu Zhang, Giorgio Biasiol, Shanmin Wang, Jinlong Zhu, Ping Miao, Xin Tong, Dapeng Yu, Richard Mole, Yi Cui, Long Ma, Zhitao Zhang, Zhongwen Ouyang, Wei Tong, Andrey Podlesnyak, Ling Wang, Feng Ye, Dehong Yu, Weiqiang Yu, Liusuo Wu, and Zhentao Wang, Bose-Einstein condensation of a two-magnon bound state in a spin-one triangular lattice, Nature Materials, accepted (2024)

[20] Mingjie Dong, Maolin Yang, Ziwei Chen, Wenguang Zhao, Zhongyuan Huang, Guojie Chen, Wenxin Tong, Sijia Chen, Wenhai Ji, Tingting Yang, Huaican Chen, Ping Miao, Wen Yin, Jun Wang, Rui Wang, Yinguo Xiao, Realizing high-capacity and low-strain manganese-based sodium cathode by regulating the doping sites of Mg with a post-doping approach, Journal of Power Sources 623,235391,(2024)

[21] Han Ge, Tiantian Li, Stanislav E. Nikitin, Nan Zhao, Fangli Li, Huanpeng Bu, Jiayue Yuan, Jian Chen, Ying Fu, Jiong Yang, Le Wang, Ping Miao, Qiang Zhang, Inés Puente-Orench, Andrey Podlesnyak, Jieming Sheng, and Liusuo Wu,


Magnetic structure and Ising-like antiferromagnetism in the bilayer triangular lattice compound NdZnPO, Phys. Rev. B 110, 054443 (2024)

[22] W. G. Zheng, V. Balédent, Y. Oubaid, P. Auban-Senzier, C. Colin, F. Damay, C. Pasquier, A. Forget, D. Colson, J. P. Xu, W.  Yin,

P. Miao*, and P. Foury-Leylekian*, Study of the transport and magnetic properties of substituted Ba(Fe1−xNix)2(Se1−yTey)3, Phys. Rev. B 109, 184428 (2024)

[23] Ping Miao*, Xianghong Jin, Weiliang Yao, Yue Chen, Akihiro Koda, Zhenhong Tan, Wu Xie, Wenhai Ji, Takashi Kamiyama, and Yuan Li*, Persistent spin dynamics in magnetically ordered honeycomb-lattice cobalt oxides, Phys. Rev. B 109, 134431(2024)

[24] Shen Han, Shengnan Dai, Jie Ma, Qingyong Ren, Chaoliang Hu, Ziheng Gao, Manh Duc Le, Denis Sheptyakov, Ping Miao, Shuki Torii, Takashi Kamiyama, Claudia Felser, Jiong Yang, Chenguang Fu& Tiejun Zhu, Strong phonon softening and avoided crossing in aliovalence-doped heavy-band thermoelectrics, Nature Physics, 19, 1649 (2023)

[25] Nan Zhao, Jieming Sheng, Jinchen Wang, Han Ge, Tiantian Li, Jiong Yang, Shanmin Wang, Ping Miao, Hua He, Xin Tong, Wei Bao, Er-Jia Guo, Richard Mole, Dehong Yu, Andrey A. Podlesnyak, and Liusuo Wu, Quasi-one-dimensional Ising-like antiferromagnetism in the rare-earth perovskite oxide TbScO3, Phys. Rev. Mater. 7, 034401 (2023)

[26] Dong Zhang, Zhenhong Tan, Xiaohuan Lin, Yingxia Wang, Sanghyun Lee, Shuki Torii, Nan Zhao, Liusuo Wu, Wengen Zheng, Wu Xie, Wenhai Ji, Takashi Kamiyama, Ping Miao*, Zero thermal expansion in NdBaCo2O5.5+x, J. Phys. Chem. C, 127, 18192 (2023)

[27] Yating Zhou, Anucha Koedtruad, Zhenhong Tan, Dong Zhang, Linxiang Bao, Yajun Yue, Jianyuan Wu, Juping Xu, Yuanguang Xia, Wen Yin, Maxim Avdeev, Wang Hay Kan, Takashi Kamiyamaa, Ping Miao*, Solvent-free mechanochemical synthesis of organic proton conducting salts incorporating imidazole and dicarboxylic acids, Chinese. J. Struc. Chem., 42 100059 (2023)

[28] Yajun Yue, Aleksandra Dzięgielewska, Man Zhang, Stephen Hull, Franciszek Krok, Richard M. Whiteley, Harold Toms, Marcin Malys, Xuankai Huang, Marcin Krynski, Ping Miao, Haixue Yan, and Isaac Abrahams*, Local Structure in α‑BIMEVOXes (ME = Ge, Sn), Chem. Mater. 35, 189 (2022)

[29] Jieming Sheng, Le Wang, Andrea Candini, Wenrui Jiang, Lianglong Huang, Bin Xi, Jize Zhao, Han Ge, Nan Zhao, Ying Fu, Jun Ren, Jiong Yang, Ping Miao, Xin Tong, Dapeng Yu, Shanmin Wang, Qihang Liu, Maiko Kofu, Richard Mole, Giorgio Biasiol, Dehong Yu, Igor A. Zaliznyak, Jia-Wei Mei, and Liusuo Wu, Two-dimensional quantum universality in the spin-1/2 triangular-lattice quantum antiferromagnet Na2BaCo(PO4)2, Proc. Natl. Acad. Sci. U.S.A. 119, e2211193119 (2022)

[30] H. Ge, L. Zhang, N. Zhao, J. Yang, L. Wang, L. Zhou, Y. Fu, T. T. Li, Z. M. Song, F. Ding, J. B. Xu, Y. F. Zhang, S. M. Wang, J. W. Mei, X. Tong, P. Miao, H. He, Q. Zhang, L. S. Wu, and J. M. Sheng, Successive magnetic orderings in the Ising spin chain magnet DyNi5Ge3, Phys. Rev. Mater. 6, 085001 (2022)

[31] Xuan Wang, Xingyu Tang, Peijie Zhang, Yida Wang, Dexiang Gao, Jie Liu, Kanglong Hui, Yajie Wang, Xiao Dong, Takanori Hattori, Asami Sano-Furukawa, Kazutaka Ikeda, Ping Miao, Xiaohuan Lin, Mingxue Tang, Zicheng Zuo, Haiyan Zheng,* Kuo Li, and Ho-kwang Mao, Crystalline Fully Carboxylated Polyacetylene Obtained under High Pressure as a Li-Ion Battery Anode Material, J. Phys. Chem. Lett. 12, 50, 12055 (2021)

[32] Sheng-Qun Su, Shu-Qi Wu, Masato Hagihala, Ping Miao, Zhijian Tan, Shuki Torii, Takashi Kamiyama, Tongtong Xiao, Zhenxing Wang, Zhongwen Ouyang, Yuji Miyazaki, Motohiro Nakano, Takumi Nakanishi, Jun-Qiu Li, Shinji Kanegawa & Osamu Sato, Water-oriented magnetic anisotropy transition, Nat. Commun. 12, 2738 (2021)

[33] Jianyan Yang, Weijun Ren, Xinguo Zhao, Yukinobu Kawakita, Seiko Ohira-Kawamura, Ping Miao*, Chin-Wei Wang, Kenji Nakajima, Bing Li*, Zhidong Zhang, Mictomagnetism and suppressed thermal conduction of the prototype high-entropy alloy CrMnFeCoNi, J. Mater. Sci. Technol. 99, 55 (2022)

[34] P. Miao*, Z. Tan, S. Lee, Y. Ishikawa, S. Torii, M. Yonemura, A. Koda, K. Komatsu, S. Machida, A. Sano-Furukawa, T. Hattori, X. Lin, K. Li, T. Mochiku, R. Kikuchi, C. Kawashima, H. Takahashi, Q. Huang, S. Itoh, R. Kadono, Y. Wang, F. Pan and T. Kamiyama*, Origin of magnetovolume effect in a cobaltite, Phys. Rev. B 103, 094302 (2021)

[35] Peijie Zhang, Xingyu Tang, Yida Wang, Xuan Wang, Dexiang Gao, Yapei Li, Haiyan Zheng, Yajie Wang, Xinxin Wang, Riqiang Fu, Mingxue Tang, Kazutaka Ikeda, Ping Miao, Takanori Hattori, Asami Sano-Furukawa, Christopher A. Tulk, Jamie J. Molaison, Xiao Dong, Kuo Li*, Jing Ju* and Ho-kwang Mao, Distance-Selected Topochemical Dehydro-Diels−Alder Reaction of 1,4-Diphenylbutadiyne toward Crystalline Graphitic Nanoribbons, J. Am. Chem. Soc., 142, 17662 (2020)

[36] Z. Tan, P. Miao*, Y. Ishikawa, M. Hagihala, S. Lee, S. Torii, M. Yonemura, T. Moyoshi and T. Kamiyama*, Room Temperature Zero Thermal Expansion in a Cubic Cobaltite, J. Phys. Chem. Lett. 11, 6785 (2020)

[37] A. Pandey, P. Miao, M. Klemm, H. He, H. Wang, X. Qian, J. W. Lynn, and M. C. Aronson, Correlations and incipient antiferromagnetic order within the linear Mn chains of metallic Ti4MnBi2, Phys. Rev. B 102, 014406 (2020)

[38] K. Matan, T. Ono, G. Gitgeatpong, K. de Roos, P. Miao, S. Torii, T. Kamiyama, A. Miyata, A. Matsuo, K. Kindo, S. Takeyama, Y. Nambu, P. Piyawongwatthana, T. J. Sato, and H. Tanaka, Magnetic structure and high-field magnetization of the distorted kagome lattice antiferromagnet Cs2Cu3SnF12, Phys. Rev. B 99, 224404 (2019)

[39] P. Miao, R. Wang, W. Zhu, J. Liu, T. Liu, J. Hu, S. Li, Z. Tan, A. Koda, F. Zhu, E. Feng, Y. Su, T. Kamiyama, Y. Xiao, and F. Pan, Revealing magnetic state of a layered cathode material by Muon spin relaxation and neutron scattering techniques, Appl. Phys. Lett. 114, 203901 (2019)

[40] R. Kajimoto, K. Nakajima, M. Fujita, S. Torii, Y. Ishikawa, P. Miao and T. Kamiyama, Crystal Structures of Highly Hole-Doped Layered Perovskite Nickelate Pr2−xSrxNiO4 Studied by Neutron Diffraction, J. Phys. Soc. Jpn. 88, 114602 (2019)

[41] S. Benz, R. Missong, G. Ogutu, R. Stoffel, U. Englert, S. Torii, P. Miao, T. Kamiyama, and R. Dronskowski, Ammonothermal Synthesis, X-Ray and Time-of-Flight Neutron Crystal-Structure Determination, and Vibrational Properties of Barium Guanidinate, Ba(CN3H4)2, ChemistryOpen , 8, 327 (2019)

[42] L. Steinke, J Kistner-Morris, T. Lovorn, H. He, A. Hillier, P. Miao, S. Zellman, M. Klemm, M. Green, O. Gonzalez, A. MacDonald, and M. Aronson, Chiral transport and electronic correlations in surface states of HfNiSn single crystals, submitted to Proc. Natl. Acad. Sci. (2018)

[43] S. Lee, M. Lee, Y. Ishikawa, P. Miao, S. Torii, C. Won, K. Lee, N. Hur, D. Cho, and T. Kamiyama, Crystal and Magnetic Structures of La2CoPtO6 Double Perovskite, ACS Omega 3, 11624 (2018)

[44] S. Lee, M. Lee, Y. Ishikawa, P. Miao, S. Torii, C. Won, K. Lee, N. Hur, D. Cho, and T. Kamiyama, Magnetoelastic octahedral breathing mode in the ferrimagnetic La2CoIrO6 double perovskite, Phys. Rev. B 98, 104409 (2018)

[45] Z. Tan, P. Miao*, Y. Ishikawa, M. Hagihala, S. Lee, S. Torii, M. Yonemura, T. Moyoshi and T. Kamiyama*, Synthesis, structural and magnetic properties of La0.5Ba0.5CoO2.75+x, Atom Indonesia 44, 49 (2018)

[46] W. Uno, K. Fujii, E. Niwa, S. Torii, P. Miao, T. Kamiyama and M. Yashima, Experimental visualization of oxide-ion diffusion paths in pyrochlore-type Yb2Ti2O7, J. Ceram. Soc. Jpn. 126, 341 (2018)

[47] Z. Tan, P. Miao*, X. Lin, S. Lee, Y. Ishikawa, M. Hagihala, S. Torii, Y. Wang, M. Yonemura and T. Kamiyama*, The investigation of magnetic phase transition in cobaltite perovskites by high-resolution neutron powder diffraction under 14 T magnetic field, Physica B, 551, 111 (2018)

[48] P. Miao*, X. Lin, A. Koda, S. Lee, Y. Ishikawa, S. Torii1, M. Yonemura, T. Mochiku, H. Sagayama, S. Itoh, Y. Wang, R. Kadono and T. Kamiyama*, Large magnetovolume effect induced by embedding ferromagnetic clusters into antiferromagnetic matrix of cobaltite perovskite, Adv. Mater. 29, 1605991 (2017)

[49] P. Miao*, X. Lin, S. Lee, Y. Ishikawa, S. Torii1, M. Yonemura, T. Ueno, N. Inami, K. Ono, Y. Wang and T. Kamiyama*, Hole-doping-induced melting of spin-state ordering in PrBaCo2O5.5+x, Phys. Rev. B 95, 125123 (2017)

[50] Y. Sakai, J. Yang, R. Yu, H. Hojo, I. Yamada, P. Miao, S. Lee, S. Torii, T. Kamiyama, M. Ležaić, G. Bihlmayer, M. Mizumaki, J. Komiyama, T. Mizokawa, H. Yamamoto, T. Nishikubo, Y. Hattori, K. Oka, Y. Yin, J. Dai, W. Li, S. Ueda, A. Aimi, D. Mori, Y. Inaguma, Z. Hu, T. Uozumi, C. Jin, Y. Long, and M. Azuma, A-site and B-site charge orderings in an s–d level controlled perovskite oxide PbCoO3, J. Am. Chem. Soc. 139, 4574 (2017)

[51] B. Li, X. H. Luo, H. Wang, W. J. Ren, S. Yano, C.-W. Wang, J. S. Gardner, K.-D. Liss, P. Miao, S.-H. Lee, T. Kamiyama, R. Q. Wu, Y. Kawakita, and Z. D. Zhang, Colossal negative thermal expansion induced by magnetic phase competition on frustrated lattices in Laves phase compound (Hf,Ta)Fe2, Phys. Rev. B 93, 224405 (2016)

[52] Y. Kousaka, T. Ogura, J. Zhang, P. Miao, S. Lee, S. Torii, T. Kamiyama, J. Campo, K. Inoue, and J. Akimitsu, Long Periodic Helimagnetic Ordering in CrM3S6 (M = Nb and Ta), J. Phys.: Conf. Ser. 746, 012061 (2016)

[53] S. Lee, Y. Ishikawa, P. Miao, S. Torii, T. Ishigaki and T. Kamiyama, Magnetoelastic coupling forbidden by time-reversal symmetry: Spin-direction-dependent magnetoelastic coupling on MnO, CoO, and NiO, Phys. Rev. B 93, 064429 (2016)

[54] A.F. Gubkin, E.P. Proskurina, Y. Kousaka, E.M. Sherokalova, N.V. Selezneva, P. Miao, S. Lee, J. Zhang, Y. Ishikawa, S. Torii, T. Kamiyama, J. Campo, J. Akimitsu, and N.V. Baranov, Crystal and magnetic structures of Cr1/3NbSe2 from neutron diffraction, J. Appl. Phys. 119, 013903 (2016)

[55] S. Lee, Y. Ishikawa, P. Miao, S. Torii, and T. Kamiyama, Time of Flight Neutron Diffraction on NiO, JPS Conf. Proc. 8, 034007 (2015)

[56] K. Kawamura, M. Yashima, K. Fujii, K. Omoto, K. Hibino, S. Yamada, J. Hester, M. Avdeev, P. Miao, S. Torii, and T. Kamiyama, Structural Origin of the Anisotropic and Isotropic Thermal Expansion of K2NiF4-Type LaSrAlO4 and Sr2TiO4, Inorg. Chem. 54, 3896 (2015)

[57] K. Ikeuchi, M. Sato, S. Li, M. Toyoda, Y. Kobayashi, M. Itoh, P. Miao, S. Torii, Y. Ishikawa, T. Kamiyama, Detailed Study of the Phase Diagram of Fe-based Superconductor Ba(Fe1-xCox)2As2 by Super High-Resolution Neutron Diffraction Measurements, J. Phys.: Conf. Ser. 592, 012071 (2015)

[58] M. Hiraishi, S. Iimura, K. Kojima, J. Yamaura, H. Hiraka, K. Ikeda, P. Miao, Y. Ishikawa, S. Torii, M. Miyazaki, I. Yamauchi, A. Koda, R. Kadono, R. Kumai, T. Kamiyama, T. Otomo, Y. Murakami, S. Matuishi and H. Hosono, Bipartite Magnetic Parent Phases in The Iron Oxypnictide Superconductor, Nature Physics 10, 300 (2014)

[59] I. Qasim, P. Blanchard, B. Kennedy, C. Ling, L. Jang, T. Kamiyama, P. Miao and S. Torii, Soft Ferromagnetism in Mixed Valence Sr1−xLaxTi0.5Mn0.5O3 Perovskites, Dalton Trans. 43, 6909 (2014)

[60] I. Qasim, P. Blanchard, B. Kennedy, T. Kamiyama, P. Miao and S. Torii, Structural and Electronic Properties of Sr1−xLaxTi0.5Mn0.5O3 Perovskites, J. Solid State Chem. 213, 293 (2014)

[61] P. Miao, S. Torii, M. Yonemura, Y. Ishikawa, J. Zhang and T. Kamiyama, Structure Analysis on Small Molecular Crystal by High Resolution Neutron Powder Diffraction, J. Phys.: Conf. Ser. 502, 012055 (2014)

[62] T. Kamiyama, T. Shuki, S. Lee, P. Miao, M. Yonemura, Y. Ishikawa, Y. Noda and R. Tomiyasu, Development of SuperHRPD, a TOF neutron powder diffractomter at J-PARC, Acta Cryst. A70, C140 (2014)

[63] S. Torii, M. Yonemura, Y. Ishikawa, P. Miao, R. Tomiyasu, S. Satoh,Y. Noda and T Kamiyama, Improvement of Instrument Devices for Super High Resolution Powder Diffractometer at J-PARC, J. Phys.: Conf. Ser. 502, 012052 (2014)

[64] S. Takai, Y. Doi. S. Torii, J. Zhang, T. Putra, P. Miao, T. Kamiyama and T. Esaka, Structural and electrical properties of Pb-substituted La2Mo2O9 oxide ion conductors, Solid State Ionics 238, 36 (2013)

[65] S. Torii, M. Yonemura, T. Putra, J. Zhang, P. Miao, T. Muroya, R. Tomiyasu, T. Morishima, S. Sato, H. Sagehashi, Y. Noda and T. Kamiyama, Super High Resolution Powder Diffractometer at J-PARC, J. Phys. Soc. Jpn. 80, SB020 (2011)