Chinese Physics B, Volume. 29, Issue 9, (2020)
Intercalation of van der Waals layered materials: A route towards engineering of electron correlation
[1] P A Lee, N Nagaosa, X G Wen. Rev. Mod. Phys, 78, 17(2006).
[2] G R Stewart. Rev. Mod. Phys, 56, 755(1984).
[3] P A Lee. Rep. Prog. Phys, 71(2008).
[4] S Doniach. Physica B+C, 91, 231(1977).
[5] H R Ott, H Rudigier, P Delsing, Z Fisk. Phys. Rev. Lett, 52, 1551(1984).
[6] Z Fisk, H R Ott, T M Rice, J L Smith. Nature, 320, 124(1986).
[7] A Schröder, G Aeppli, R Coldea, M Adams, O Stockert, H Löhneysen, E Bucher, R Ramazashvili, P Coleman. Nature, 407, 351(2000).
[8] T Park, F Ronning, H Q Yuan, M B Salamon, R Movshovich, J L Sarrao, J D Thompson. Nature, 440, 65(2006).
[9] Y F Yang, Z Fisk, H O Lee, J D Thompson, D Pines. Nature, 454, 611(2008).
[10] Q Si, F Steglich. Science, 329, 1161(2010).
[11] S Kondo, D C Johnston, C A Swenson, F Borsa, A V Mahajan, L L Miller, T Gu, A I Goldman, M B Maple, D A Gajewski, E J Freeman, N R Dilley, R P Dickey, J Merrin, K Kojima, G M Luke, Y J Uemura, O Chmaissem, J D Jorgensen. Phys. Rev. Lett, 78, 3729(1997).
[12] Z Hossain, S Hamashima, K Umeo, T Takabatake, C Geibel, F Steglich. Phys. Rev. B, 62, 8950(2000).
[13] J G Cheng, J S Zhou, Y F Yang, H D Zhou, K Matsubayashi, Y Uwatoko, A MacDonald, J B Goodenough. Phys. Rev. Lett, 111(2013).
[14] E A Marseglia. Int. Rev. Phys. Chem, 3, 177(1983).
[15] R Friend, A Yoffe. Adv. Phys, 36, 1(1987).
[16] M S Dresselhaus, G Dresselhaus. Adv. Phys, 51, 1(2002).
[17] M Chhowalla, H S Shin, G Eda, L J Li, K P Loh, H Zhang. Nat. Chem, 5, 263(2013).
[18] Y Jung, Y Zhou, J J Cha. Inorg. Chem. Front, 3, 452(2016).
[19] B G Silbernagel, R B Levy, F R Gamble. Phys. Rev. B, 11, 4563(1975).
[20] A Fujimori, M Saeki, H Nozaki. Phys. Rev. B, 44, 163(1991).
[21] D W Murphy, C Cros, F J D Salvo, J V Waszczak. Inorg. Chem, 16, 3027(1977).
[22] H Nozaki, M Umehara, Y Ishizawa, M Saeki, T Mizoguchi, M Nakahira. J. Phys. Chem. Solids, 39, 851(1978).
[23] A D Vries, C Haas. J. Phys. Chem. Solids, 34, 651(1973).
[24] H Nishihara, H Yasuoka, Y Oka, K Kosuge, S Kachi. J. Phys. Soc. Jpn, 42, 787(1977).
[25] Y Kitaoka, H Yasuoka. J. Phys. Soc. Jpn, 48, 1949(1980).
[26] H Katsuta, R B McLellan, K Suzuki. J. Phys. Chem. Solids, 40, 1089(1979).
[27] M Nakanishi, K Yoshimura, K Kosuge, T Goto, T Fujii, J Takada. J. Magn. Magn. Mater, 221, 301(2000).
[28] S Funahashi, H Nozaki, I Kawada. J. Phys. Chem. Solids, 42, 1009(1981).
[29] J Niu, B Yan, Q Ji, Z Liu, M Li, P Gao, Y Zhang, D Yu, X Wu. Phys. Rev. B, 96(2017).
[30] S Barua, M C Hatnean, M R Lees, G Balakrishnan. Sci. Rep, 7(2017).
[31] H Liu, Y Xue, J A Shi, R A Guzman, P Zhang, Z Zhou, Y He, C Bian, L Wu, R Ma et al. Nano Lett, 19, 8572(2019).
[32] Z Hossain, H Ohmoto, K Umeo, F Iga, T Suzuki, T Takabatake, N Takamoto, K Kindo. Phys. Rev. B, 60(1999).
[33] S Y Li, L Taillefer, D G Hawthorn, M A Tanatar, J Paglione, M Sutherland, R W Hill, C H Wang, X H Chen. Phys. Rev. Lett, 93(2004).
[34] N H Andersen, H Smith. Phys. Rev. B, 19, 384(1979).
[35] J C Lashley, R Stevens, M K Crawford, J Boerio-Goates, B F Woodfield, Y Qiu, J W Lynn, P A Goddard, R A Fisher. Phys. Rev. B, 78(2008).
[36] M Falkowski, A Kowalczyk, T Toliński. J. Alloys Compd, 509, 6135(2011).
[37] T Toliński, A Kowalczyk, A Szewczyk, M Gutowska. J. Phys.: Condens. Matter, 18, 3435(2006).
[38] P Svoboda, J Vejpravová, N T Kim-Ngan, F Kaysel. J. Magnet. Magnet. Mater, 272--276, 595(2004).
[39] K Schotte, U Schotte. Phys. Lett. A, 55, 38(1975).
[40] C D Bredl, F Steglich, K D Schotte. Zeitschrift Für Physik B Condensed Matter, 29, 327(1978).
[41] J Kawabata, T Takabatake, K Umeo, Y Muro. Phys. Rev. B, 89(2014).
[42] H Hodovanets, S L Bud’ko, W E Straszheim, V Taufour, E D Mun, H Kim, R Flint, P C Canfield. Phys. Rev. Lett, 114(2015).
[43] D C Mattis. Theory of Magnetism II: Thermodynamics and statistical mechanics, 22(1985).
[44] J A Blanco, D Gignoux, D Schmitt. Phys. Rev. B, 43(1991).
[45] J A Blanco, M de Podesta, J I Espeso, J C Gomez Sal, C Lester, K A McEwen, N Patrikios, J Rodriguez Fernandez. Phys. Rev. B, 49(1994).
[46] A Gauzzi, A Sellam, G Rousse, Y Klein, D Taverna, P Giura, M Calandra, G Loupias, F Gozzo, E Gilioli, F Bolzoni, G Allodi, R De Renzi, G L Calestani, P Roy. Phys. Rev. B, 89(2014).
[47] W Kohn, L J Sham. Phys. Rev, 140(1965).
[48] P A Beck, H Claus. J. Res. Nat. Bur. Stand, A 74, 449(1970).
[49] S Y Savrasov, D Y Savrasov. Phys. Rev. B, 54(1996).
[50] A P Pikul, D Kaczorowski, T Plackowski, A Czopnik, H Michor, E Bauer, G Hilscher, P Rogl, Y Grin. Phys. Rev. B, 67(2003).
[51] Y F Yang, P David. Proc. Natl. Acad. Sci. USA, 109(2012).
[52] Y F Yang. Rep. Prog. Phys, 79(2016).
[53] B Becker, S Ramakrishnan, A A Menovsky, G J Nieuwenhuys, J A Mydosh. Phys. Rev. Lett, 78, 1347(1997).
[54] S A M Mentink, T E Mason, S Süllow, G J Nieuwenhuys, A A Menovsky, J A Mydosh, J A A J Perenboom. Phys. Rev. B, 53(1996).
[55] N H Andersen. Crystalline electric field and structural effects in f-electron systems, 375(1980).
[56] B Raquet, M Viret, E Sondergard, O Cespedes, R Mamy. Phys. Rev. B, 66(2002).
[57] P V P Madduri, S N Kaul. Phys. Rev. B, 95(2017).
[58] E Jobiliong, J S Brooks, E S Choi, H Lee, Z Fisk. Phys. Rev. B, 72(2005).
[59] K Kadowaki, S Woods. Solid State Commun, 58, 507(1986).
[60] D B McWhan, J P Remeika, S D Bader, B B Triplett, N E Phillips. Phys. Rev. B, 7, 3079(1973).
[61] Y Maeno, K Yoshida, H Hashimoto, S Nishizaki, S ichi Ikeda, M Nohara, T Fujita, A Mackenzie, N Hussey, J Bednorz, F Lichtenberg. J. Phys. Soc. Jpn, 66, 1405(1997).
[62] C Urano, M Nohara, S Kondo, F Sakai, H Takagi, T Shiraki, T Okubo. Phys. Rev. Lett, 85, 1052(2000).
[63] K Miyake, T Matsuura, C Varma. Solid State Commun, 71, 1149(1989).
[64] A C Jacko, J O Fjærestad, B J Powell. Nat. Phys, 5, 422(1989).
[65] P Schlottmann. Phys. Rep, 181, 1(1989).
[66] W Zhou, C Q Xu, B Li, R Sankar, F M Zhang, B Qian, C Cao, J H Dai, J Lu, W X Jiang, D Qian, X Xu. Phys. Rev. B, 97(2018).
[67] R Pietri, B Andraka, D Kaczorowski, A Leithe-Jasper, P Rogl. Phys. Rev. B, 61(2000).
[68] V Zlatić, B Horvatić, I Milat, B Coqblin, G Czycholl, C Grenzebach. Phys. Rev. B, 68(2003).
[69] D Jaccard, K Behnia, J Sierro. Phys. Lett. A, 163, 475(1992).
[70] Z Ren, G W Scheerer, G Lapertot, D Jaccard. Phys. Rev. B, 94(2016).
[71] Y T Fan, W H Lee, Y Y Chen. Phys. Rev. B, 69(2004).
[72] M Szlawska, D Kaczorowski. Phys. Rev. B, 85(2012).
[73] J P Perdew, K Burke, M Ernzerhof. Phys. Rev. Lett, 77, 3865(1996).
[74] V Blum, R Gehrke, F Hanke, P Havu, V Havu, X G Ren, K Reuter, M Scheffler. Comput. Phys. Commun, 180, 2175(2009).
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Jingjing Niu, Wenjie Zhang, Zhilin Li, Sixian Yang, Dayu Yan, Shulin Chen, Zhepeng Zhang, Yanfeng Zhang, Xinguo Ren, Peng Gao, Youguo Shi, Dapeng Yu, Xiaosong Wu. Intercalation of van der Waals layered materials: A route towards engineering of electron correlation[J]. Chinese Physics B, 2020, 29(9):
Received: Jul. 11, 2020
Accepted: --
Published Online: Apr. 29, 2021
The Author Email: Wu Xiaosong (xswu@pku.edu.cn)