R
Ruifang Wang
Researcher at Xiamen University
Publications - 71
Citations - 4104
Ruifang Wang is an academic researcher from Xiamen University. The author has contributed to research in topics: Branching fraction & Magnetization. The author has an hindex of 27, co-authored 71 publications receiving 3801 citations. Previous affiliations of Ruifang Wang include Pennsylvania State University & Peking University.
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Journal ArticleDOI
Artificial ‘spin ice’ in a geometrically frustrated lattice of nanoscale ferromagnetic islands
Ruifang Wang,Cristiano Nisoli,Rafael S. Freitas,Jia Li,W. McConville,B. J. Cooley,M. S. Lund,Nitin Samarth,Chris Leighton,Vincent H. Crespi,Peter Schiffer +10 more
TL;DR: In this article, an artificial geometrically frustrated magnet based on an array of lithographically fabricated single-domain ferromagnetic islands is presented, where the islands are arranged such that the dipole interactions create a two-dimensional analogue to spin ice.
Journal Article
Artificial spin ice in a geometrically frustrated lattice of nanoscale ferromagnetic islands: addendum
Ruifang Wang,Cristiano Nisoli,Rafael S. Freitas,Jia Li,W. McConville,Lund,Nitin Samarth,Chris Leighton,V H Crescpi,Peter Schiffer +9 more
TL;DR: This work reports an artificial geometrically frustrated magnet based on an array of lithographically fabricated single-domain ferromagnetic islands, arranged such that the dipole interactions create a two-dimensional analogue to spin ice, behaviour which is strikingly similar to the low-temperature state of spin ice.
Journal ArticleDOI
First measurement of the rate for the inclusive radiative penguin decay b→sγ
M. S. Alam,I. J. Kim,Z. Ling,A. H. Mahmood,J. J. O'Neill,H. Severini,C. R. Sun,F. R. Wappler,G. Crawford,C. M. Daubenmier,R. Fulton,D. Fujino,K. K. Gan,K. Honscheid,H. Kagan,R. D. Kass,Jungil Lee,M. Sung,Christopher G. White,A. Wolf,M. M. Zoeller,F. Butler,X. Fu,B. Nemati,W. R. Ross,P. Skubic,Michael Wood,M. Bishai,J. Fast,E. Gerndt,J. W. Hinson,R. L. McIlwain,T. Miao,D. H. Miller,M. Modesitt,D. Payne,E. I. Shibata,I. P.J. Shipsey,Pu Wang,M. Battle,J. Ernst,L. Gibbons,Y. Kwon,S. Roberts,E. H. Thorndike,Chunjie Wang,T. E. Coan,J. Dominick,V. Fadeyev,I. Korolkov,M. Lambrecht,S. Sanghera,V. Shelkov,T. Skwarnicki,Ryszard Stroynowski,I. Volobouev,G. Wei,Marina Artuso,M. Gao,M. Goldberg,D. He,N. Horwitz,G. C. Moneti,R. Mountain,F. Muheim,Yurii V. Mukhin,S. Playfer,Yoram Rozen,Sheldon Stone,Xiangjun Xing,G. Zhu,J. Bartelt,S. E. Csorna,Z. Egyed,Vivek Jain,D. Gibaut,K. Kinoshita,P. Pomianowski,B. C. Barish,M. Chadha,S. Chan,D. F. Cowen,G. Eigen,J. S. Miller,C. O'Grady,J. Urheim,A. J. Weinstein,M. Athanas,W. S. Brower,G. Masek,H. P. Paar,J. Gronberg,C. M. Korte,R. Kutschke,S. Menary,R. J. Morrison,S. Nakanishi,H. N. Nelson,T. K. Nelson,C. Qiao,Jeffrey Richman,Anders Ryd,D. Sperka,H. Tajima,Michael S. Witherell,R. Balest,K. Cho,W. T. Ford,Daniel Johnson,K. Lingel,M. Lohner,P. Rankin,J. G. Smith,J. P. Alexander,C. Bebek,Karl Berkelman,Kenneth Bloom,T. E. Browder,D. G. Cassel,H. A. Cho,D. M. Coffman,D. S. Crowcroft,P. S. Drell,D. J. Dumas,R. Ehrlich,P. Gaidarev,Maurice Garcia-Sciveres,B. Geiser,B. Gittelman,S. W. Gray,D. L. Hartill,B. K. Heltsley,Shawn W. Henderson,C. D. Jones,S. L. Jones,J. Kandaswamy,N. Katayama,P. C. Kim,D. L. Kreinick,G. S. Ludwig,J. Masui,J. Mevissen,N. B. Mistry,C. R. Ng,E. Nordberg,Juliet Ritchie Patterson,D. Peterson,D. Riley,S. Salman,M. Sapper,F. Würthwein,Paul Avery,A. P. Freyberger,Jorge Luis Rodriguez,Shengfeng Yang,John Yelton,D. Cinabro,T. Liu,M. Saulnier,Richard Wilson,H. Yamamoto,T. Bergfeld,B. I. Eisenstein,George D Gollin,B. Ong,M.A. Palmer,Mats A Selen,J. J. Thaler,K. W. Edwards,M. Ogg,Alain Bellerive,Dave Britton,E. R.F. Hyatt,D. B. MacFarlane,P. M. Patel,B. Spaan,A. J. Sadoff,R. Ammar,Philip Baringer,Alice Bean,D. Z. Besson,D. Coppage,N. Copty,R. Davis,N. Hancock,M. L. Kelly,S. Kotov,Ilya Kravchenko,N. Kwak,Ha Lam,Yuichi Kubota,M. Lattery,M. Momayezi,J. K. Nelson,S. Patton,R. Poling,V. Savinov,S. Schrenk,Ruifang Wang +198 more
TL;DR: Upper and lower limits on the branching ratio, each at 95% C.L., are {ital B}({ital b}{r_arrow}{ital s}{gamma}){gt}1.0{times}10{sup {minus}4}.
Journal ArticleDOI
Highly enhanced Curie temperature in low-temperature annealed [Ga,Mn]As epilayers
K. C. Ku,S. J. Potashnik,Ruifang Wang,Seung-Hyun Chun,Seung-Hyun Chun,Peter Schiffer,Nitin Samarth,Maeng-Je Seong,Angelo Mascarenhas,Ezekiel Johnston-Halperin,Roberto C. Myers,Arthur C. Gossard,David D. Awschalom +12 more
TL;DR: In this article, the authors reported Curie temperatures up to 150 K in annealed Ga1−xMnxAs epilayers grown with a relatively low As:Ga beam equivalent pressure ratio.
Journal ArticleDOI
Highly enhanced Curie temperatures in low temperature annealed (Ga,Mn)As epilayers
K. C. Ku,S. J. Potashnik,Ruifang Wang,M. J. Seong,Ezekiel Johnston-Halperin,R. C. Meyers,Seung-Hyun Chun,A. Mascarenhas,Arthur C. Gossard,David D. Awschalom,Peter Schiffer,Nitin Samarth +11 more
TL;DR: In this article, the authors reported Curie temperatures up to 150 K in annealed Ga1-xMnxAs epilayers with a relatively low As:Ga beam equivalent pressure ratio.