activity
20132016
most citedOptimizing the lattice design for a diffraction-limited storage ring with a rational combination of particle swarm and genetic algorithms

36 citations · 97 across the 8 of their papers we have counts for

collaborators

8 papers

physics.acc-ph2016★ 36 cited

Optimizing the lattice design for a diffraction-limited storage ring with a rational combination of particle swarm and genetic algorithms

Y. Jiao, G. Xu

In the design of a diffraction-limited storage ring (DLSR) consisting of compact multi-bend achromats (MBAs), it is challenging to simultaneously achieve an ultralow emittance and…

physics.acc-ph2015★ 20 cited

ESRF-type lattice design and optimization for the High Energy Photon Source

Gang Xu, Yi Jiao, Yue-Mei Peng

A new generation of storage ring-based light source, called diffraction-limited storage ring (DLSR), with emittance approaching the diffraction limit for multi-keV photons by means…

physics.acc-ph2014★ 5 cited

PEPX-type lattice design and optimization for the High Energy Photon Source

Yi Jiao, Gang Xu

A new generation of storage ring-based light source, called diffraction-limited storage ring (DLSR), with the emittance approaching the diffraction limit for multi-keV photons by u…

physics.acc-ph2014★ 7 cited

Suppression of the emittance growth induced by coherent synchrotron radiation in triple-bend achromats

Xiyang Huang, Yi Jiao, Gang Xu +1

The coherent synchrotron radiation (CSR) effect in a bending path plays an important role in transverse emittance dilution in high-brightness light sources and linear colliders, wh…

physics.acc-ph2013

Suppression of the emittance growth induced by CSR in a DBA cell

Cui Xiao-Hao, Jiao Yi, Xu Gang +1

The Emittace growth induced by Coherent Synchrotron Radiation(CSR) is an important issue when electron bunches with short bunch length and high peak current are transported in a be…

physics.acc-ph2013★ 8 cited

Realization of locally-round beam in an ultimate storage ring using solenoids

Xu Gang, Jiao Yi, Tian Saike

Ultimate storage rings (USRs), with electron emittance smaller than 100 pm.rad and on the scale of the diffraction limit for hard X-rays in both transverse planes, have the potenti…