support from Chile:Agencia Nacional de Investigación y Desarrollo(FONDECYT 1190886,FONDECYT 1210400,FONDECYT 1230812,FONDECYT 1230987);China:the National Natural Science Foundation of China(12175119,12275265,12075060);Czech Republic:PRIMUS Research Programme(PRIMUS/21/SCI/017);European Union:European Research Council(ERC-948254),Horizon 2020 Framework Programme(MUCCA-CHIST-ERA-19-XAI-00),European Union,Future Artificial Intelligence Research(FAIRNextGenerationEU PE00000013),Italian Center for High Performance Computing,Big Data and Quantum Computing(ICSC,NextGenerationEU),Marie Sklodowska-Curie Actions(EU H2020 MSC IF GRANT NO 101033496);France:Agence Nationale de la Recherche(ANR-20-CE31-0013,ANR-21-CE31-0013,ANR-21-CE31-0022),Investissements d’Avenir Idex(ANR-11-LABX-0012),Investissements d’Avenir Labex(ANR-11-LABX-0012);Germany:Baden-Württemberg Stiftung(BW Stiftung-Postdoc Eliteprogramme),Deutsche Forschungsgemeinschaft(DFG-CR 312/5-1);Italy:Istituto Nazionale di Fisica Nucleare(FELLINI G.A.n.754496,ICSC,NextGenerationEU);Japan:Japan Society for the Promotion of Science(JSPS KAKENHI JP21H05085,JSPS KAKENHI JP22H01227,JSPS KAKENHI JP22H04944);Netherlands:Netherlands Organisation for Scientific Research(NWO Veni 2020-VI.Veni.202.179);Norway:Research Council of Norway(RCN-314472);Poland:Polish National Agency for Academic Exchange(PPN/PPO/2020/1/00002/U/00001),Polish National Science Centre(NCN 2021/42/E/ST2/00350,NCN UMO-2019/34/E/ST2/00393,UMO-2020/37/B/ST2/01043,UMO-2021/40/C/ST2/00187);Slovenia:Slovenian Research Agency(ARIS grant J1-3010);Spain:BBVA Foundation(LEO22-1-603),Generalitat Valenciana(Artemisa,FEDER,IDIFEDER/2018/048),La Caixa Banking Foundation(LCF/BQ/PI20/11760025),Ministry of Science and Innovation(MCIN&NextGenEU-PCI2022-135018-2,MICIN&FEDER-PID2021-125273NB,RYC2019-028510-I,RYC2020-030254-I,RYC2021-031273-I,RYC2022-038164-I),PROMETEO and GenT Programmes Generalitat Valenciana(CIDEGENT/2019/023,CIDEGENT/2019/027);Sweden:Swedish Research Council(VR 2018-00482,VR 2022-03845,VR 2022-04683,V
Results from a wide range of searches targeting different experimental signatures with and without missing transverse momentum(E_(T)^(miss))are used to constrain a Two-Higgs-Doublet Model(2HDM)with an additional pseud...
the National Key Research and Development Program(MOST 2022YFA1602303 and MOST 2023YFA1606404);the National Natural Science Foundation of China(Nos.12347106,2147101,11925502,11935001 and 11961141003);the Strategic Priority Research Program of Chinese Academy of Sciences(No.XDB34030000).
The recently discovered,extremely proton-rich nuclide 18 Mg exhibits ground-state decay via two sequential two-proton(2p)emissions through the intermediate nucleus,16Ne.This study investigates the structure and the in...
supported by the National Natural Science Foundation of China (Nos. 11575214, 11527811, and 11805218);the Fermi Research Alliance;LLC;under contract no. DE-AC02-07CH11359with the U.S. Department of Energy。
The beam-beam effects in a hadron collider with an unprecedented energy scale were studied.These effects are strongly related to the attainable luminosity of the collider.Long-range interactions were identified as the...
The present work aims to study the possible states of matter and the location of phase boundaries between hadronic gas and the quark-gluon plasma QGP. The boundary at the hadron freeze-out is also considered. Proton-p...
supported by National Natural Science Foundation of China(Nos.11822401,41674177 and 41874208).
Most protons in the solar wind belong to one of two different populations,the less dense beam protons and the denser core protons.The beam protons,with a velocity of(1-2)V_(A)(V_(A)is the local Alfvén speed),always d...
the National Natural Science Foundation of China(Projects:11575214).
Purpose The design luminosity and the beam energy scale in the future Super Proton–Proton Collider(SPPC)are unprecedented.In this article,different luminosity and leveling scenarios are studied to see if the luminosi...
National Basic Research Program of China(973 Program)(2014CB845405);China Postdoctoral Science Foundation Funded Project(2017M610663)。
The anti-proton annihilation at darmstadt(PANDA)will be a key experiment at the Facility for antiproton and Ion Research(FAIR).One of its main goals is to measure absolute cross section with precision better than 5%.I...
Supported by National Natural Science Foundation of China(11575103,11747319);the Shanxi Provincial Natural Science Foundation(201701D121005);the Fund for Shanxi "1331 Project" Key Subjects Construction
Rapidity-dependent transverse momentum spectra of negatively charged pions measured at different rapidities in proton-proton collisions at the Super Proton Synchrotron (SPS) at various energies within its Beam Energ...
National Basic Research Program of China(973 Program)(2013CB834404);National Natural Science Foundation of China(10735100,10727505,11005156,U1432246,U1432127)
Proton(p) and two-proton(2p) emissions from the proton-rich nuclei with 10≤Z≤20 have been explored by the in-fight decay and implantation decay methods, respectively, in a series of experiments at the HIRFL-RIBLL fa...
Supported by National Natural Science Foundation of China(11175192)
In this paper we show a systematic method of appropriate parameter choice for a circular proton-proton collider by using an analytical expression for the beam beam tune shift limit, starting from a given design goal a...