The mechanism of electropolishing of niobium in hydrofluoric–sulfuric acid electrolyte H Tian, SG Corcoran, CE Reece, MJ Kelley Journal of the Electrochemical Society 155 (9), D563, 2008 | 115 | 2008 |
Surface studies of niobium chemically polished under conditions for superconducting radio frequency (SRF) cavity production H Tian, CE Reece, MJ Kelley, S Wang, L Plucinski, KE Smith, MM Nowell Applied Surface Science 253 (3), 1236-1242, 2006 | 64 | 2006 |
Enhanced characterization of niobium surface topography C Xu, H Tian, CE Reece, MJ Kelley Physical Review Special Topics—Accelerators and Beams 14 (12), 123501, 2011 | 43 | 2011 |
Topographic power spectral density study of the effect of surface treatment processes on niobium for superconducting radio frequency accelerator cavities C Xu, H Tian, CE Reece, MJ Kelley Physical Review Special Topics—Accelerators and Beams 15 (4), 043502, 2012 | 42 | 2012 |
A novel approach to characterizing the surface topography of niobium superconducting radio frequency (SRF) accelerator cavities H Tian, G Ribeill, C Xu, CE Reece, MJ Kelley Applied Surface Science 257 (11), 4781-4786, 2011 | 42 | 2011 |
Evaluation of the diffusion coefficient of fluorine during the electropolishing of niobium H Tian, CE Reece Physical Review Special Topics—Accelerators and Beams 13 (8), 083502, 2010 | 39 | 2010 |
Buffered electrochemical polishing of niobium G Ciovati, H Tian, SG Corcoran Journal of Applied Electrochemistry 41, 721-730, 2011 | 29 | 2011 |
Exploiting new electrochemical understanding of niobium electropolishing for improved performance of SRF cavities for CEBAF CE Reece, H Tian Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA …, 2010 | 14 | 2010 |
Optimizing centrifugal barrel polishing for mirror finish srf cavity and rf tests at jefferson lab AD Palczewski, RL Geng, H Tian IPAC2012, 2435, 2012 | 12 | 2012 |
Analysis of surface nitrides created during doping heat treatments of niobium JK Spradlin, AD Palczewski, H Tian, CE Reece Proc. SRF'19, 106-111, 2019 | 10 | 2019 |
Surface analysis of Nb materials for SRF cavities P Maheshwari, H Tian, CE Reece, MJ Kelley, GR Myneni, FA Stevie, ... Surface and interface analysis 43 (1‐2), 151-153, 2011 | 10 | 2011 |
Recent xps studies of the effect of processing on nb srf surfaces H Tian, B Xiao, M Kelley, C Reece, A DeMasi, L Pipe, K Smith Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA …, 2008 | 7 | 2008 |
Proceedings of 29th Linear Accelerator Conference, LINAC-2018, Beijing, China H Tian, B Straka, J Carroll, C Reece, T Hall, R Radhakrishna, M Inman, ... JACoW, 2018 | 6 | 2018 |
Quantitative EP studies and results for SRF Nb cavity production H Tian, CE Reece Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA …, 2012 | 6 | 2012 |
Novel characterization of the electropolishing of niobium with sulfuric and hydrofluoric acid mixtures H Tian, C Reece, M Kelley, S Corcoran Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA …, 2008 | 6 | 2008 |
Electrochemical finishing treatment of Nb3Sn diffusion coated niobium U Pudasaini, G Eremeev, CE Reece, H Tian, MJ Kelley Proceedings of the 18th International Conference on RF Superconductivity …, 2017 | 5 | 2017 |
Detailed surface analysis of incremental centrifugal barrel polishing (cbp) of single-crystal niobium samples AD Palczewski, H Tian, O Trofimova, CE Reece Thomas Jefferson National Accelerator Facility (TJNAF), Newport News, VA …, 2011 | 5 | 2011 |
Buffered electropolishing--a new way for achieving extremely smooth surface finish on Nb SRF cavities to be used in particle accelerators AT Wu, RA Rimmer, XY Lu, F Eozenou, L Lin, G Ciovati, J Mammosser, ... arXiv preprint arXiv:0905.1957, 2009 | 4 | 2009 |
Analysis of the topographic transformation of niobium surfaces under controlled EP conditions H Tian, W Sommer, O Trofimova, CE Reece, L Zhao Proceedings of 14th SRF workshop, Berlin, Germany, 2009 | 4 | 2009 |
Surface study of niobium for superconducting radio frequency (SRF) accelerators H Tian The College of William and Mary, 2008 | 4 | 2008 |