- 
								[1]
								M. Eriksson et al, J. Synchrotron Rad., 21:837(2014) 
- 
								[2]
								D. Einfeld et al, J. Synchrotron Rad., 21:856(2014) 
- 
								[3]
								J. Chavanne et al, Synchrotron Rad. News, 28:15(2015) 
- 
								[4]
								P. F. Tavares et al, J. Synchrotron Rad., 21:862(2014) 
- 
								[5]
								W. Fan et al, Sci. Chin. Phys. Mechanics and Astronomy, 55:802(2012) 
- 
								[6]
								U. Bergmann et al, Science and technology of future light sources:A white paper, No. SLAC-R-917, Stanford Linear Accelerator Center (SLAC) (2009) 
- 
								[7]
								E. Al-Dmour et al, J. Synchrotron Rad., 21:878(2014) 
- 
								[8]
								M. Hettel et al, Perspectives and Challenges for Diffraction-Limited Storage Ring Light Sources. Proc. NA-PAC13(2013) 
- 
								[9]
								J. C. Chang et al, Numerical Simulation and Air Conditioning System Study for the Storage Ring of TLS, Proc. IPAC, (2010) 
- 
								[10]
								D. P. Barber et al, Phys. Lett. B, 135:498(1984) 
- 
								[11]
								A. S. Artamonov et al, Phys. Lett. B, 118:225(1982) 
- 
								[12]
								K. Chouffani et al, Phys. Rev. ST-AB, 9:050701(2006) 
- 
								[13]
								V. E. Blinov et al, Nucl. Instrum. Methods A, 494:81(2002) 
- 
								[14]
								C. Sun et al, Phys. Rev. ST-AB, 12(6):062801(2009) 
- 
								[15]
								W. Xu et al, Chin. Phys. C, 37:76(2013) 
- 
								[16]
								P. Langevin, J. Phys, 4:678(1905) 
- 
								[17]
								P. Langevin, Annales de Chimie et de Physique, 5:70(1905) 
- 
								[18]
								M. Rao et al, Phys. Rev. B, 42:856(1990) 
- 
								[19]
								M. Rao et al, Phys. Rev. B, 43:3373(1991) 
- 
								[20]
								D. Dhar et al, J. Phys. A:Mathematical and General, 25:4967(1992) 
- 
								[21]
								I.D. Mayergoyz, Mathematical models of hysteresis (New York:Springer-Verlag, 1991) 
- 
								[22]
								B. D. Coleman et al, Arch. Rat. Mech. Analys., 99:375(1987) 
- 
								[23]
								B. D. Coleman et al, Int. J. Eng. Sci., 24:897(1986) 
- 
								[24]
								D. C. Jiles et al, IEEE Trans. Magn., 19:2183(1983) 
- 
								[25]
								D. C. Jiles et al, J. Appl. Phys., 55:2115(1984) 
- 
								[26]
								D. C. Jiles et al, J. Magn. Magn. Mater., 61:48(1986) 
- 
								[27]
								D. C. Jiles et al, J. Magn. Magn. Mater., 92:289(1990) 
- 
								[28]
								D. C. Jiles, IEEE Trans. Magn., 28:2602(1992) 
- 
								[29]
								D. C. Jiles, IEEE Trans. Magn., 29:3490(1993) 
- 
								[30]
								D. C. Jiles, J. Appl. Phys. 76:5849(1994) 
- 
								[31]
								J. A. Ewing et al, Magnetic Qualities of Iron, Proc. R. Soc. London, 54:75-77(1893) 
- 
								[32]
								M. L. Hodgdon, IEEE Trans. Magn., 24:3120(1988) 
- 
								[33]
								D. C. Jiles et al, IEEE Trans. Magn., 25:3928(1989) 
- 
								[34]
								S. Y. Lee, Accelerator physics (Singapore:World scientific, 1999) 
- 
								[35]
								Y. K. Wu, Theoretical and experimental studies of the beam physics in the duke fel storage ring, Ph.D Thesis (1995) 
- 
								[36]
								J.T. Tanabe, Iron dominated electromagnets:design, fabrication, assembly and measurements (World Scientific, 2005) 
- 
								[37]
								V. N. Litvinenko et al, Performance of Achromatic Lattice with Combined Function Sextupoles at Duke Storage Ring, Proc. PAC, 2:796(1995) 
- 
								[38]
								Y. K. Wu et al, A Physics Based Control System for the Duke Storage Ring, Proc. PAC, 4:2483(2003) 
- 
								[39]
								A. Chao et al, Phys. Rev. ST-AB, 5:111001(2002)