Ω-dibaryon production with hadron interaction potential from the lattice QCD in relativistic heavy-ion collisions
暂无分享,去创建一个
[1] Werner Dinkelbach. On Nonlinear Fractional Programming , 1967 .
[2] Fred Cooper,et al. Single-particle distribution in the hydrodynamic and statistical thermodynamic models of multiparticle production , 1974 .
[3] Robert L. Jaffe,et al. Perhaps a Stable Dihyperon , 1977 .
[4] Stephenson,et al. Strangeness -3 dibaryons. , 1987, Physical review letters.
[5] Koike,et al. Benchmark solutions for a model three-nucleon scattering problem. , 1990, Physical review. C, Nuclear physics.
[6] M. Gyulassy,et al. HIGING: A Monte Carlo model for multiple jet production in pp, pA, and AA collisions. , 1991, Physical review. D, Particles and fields.
[7] M. Gyulassy,et al. HIJING 1.0: A Monte Carlo program for parton and particle production in high energy hadronic and nuclear collisions , 1994 .
[8] Formation of superdense hadronic matter in high energy heavy-ion collisions. , 1995, Physical review. C, Nuclear physics.
[9] Quark delocalization, color screening, and dibaryons. , 1995, Physical review. C, Nuclear physics.
[10] Bin Zhang,et al. ZPC 1.0.1: A Parton cascade for ultrarelativistic heavy ion collisions , 1998 .
[11] I. Mishustin,et al. Reconstruction of the proton source in relativistic heavy ion collisions , 1999, nucl-th/9907066.
[12] T. Ho,et al. Suggesting a di-omega dibaryon search in heavy ion collision experiments , 2000 .
[13] Schaffner-Bielich,et al. Dibaryons with strangeness: their weak nonleptonic decay using SU(3) symmetry and how to find them in relativistic heavy-Ion collisions , 1999, Physical review letters.
[14] Z. Y. Zhang,et al. Dibaryon systems in chiral SU(3) quark model , 2000 .
[15] Q.B.Li,et al. Dibaryon Systems In SU(3) Chira Quark Model , 2000, nucl-th/0009038.
[16] Yu You-wen,et al. + ! ()J¼=0+ + X Cross Section Calculation ¤ , 2001 .
[17] C. Ko,et al. Partonic effects on pion interferometry at the relativistic heavy-ion collider. , 2002, Physical review letters.
[18] T. Ho,et al. Di-Ω (ΩΩ) J π =0 + production cross section calculation , 2002 .
[19] C. Ko,et al. Light cluster production in intermediate energy heavy-ion collisions induced by neutron-rich nuclei , 2003, nucl-th/0306032.
[20] Observable implications of geometrical and dynamical aspects of freeze-out in heavy ion collisions , 2003, nucl-th/0312024.
[21] K. Shigaki,et al. Identified charged particle spectra and yields in Au + Au collisions at √sNN = 200 GeV , 2004 .
[22] Bin Zhang,et al. Multiphase transport model for relativistic heavy ion collisions , 2005 .
[23] Z. Zhang,et al. Diomega production in relativistic heavy ion collisions , 2001, nucl-th/0107070.
[24] J. Chen,et al. Di-hadron azimuthal correlation and Mach-like cone structure in a parton/hadron transport model , 2006, nucl-th/0601012.
[25] Structure of Di-Ω Dibaryon , 2006 .
[26] G. S. Averichev,et al. Scaling properties of hyperon production in Au+Au collisions at square root [sNN]=200 GeV. , 2006, Physical review letters.
[27] G. S. Averichev,et al. System-size independence of directed flow measured at the BNL relativistic heavy-ion collider. , 2008, Physical review letters.
[28] J. Chen,et al. Searching for onset of deconfinement via hypernuclei and baryon-strangeness correlations , 2009, 0908.3357.
[29] Ha H. Nguyen,et al. Fast Global Optimal Power Allocation in Wireless Networks by Local D.C. Programming , 2012, IEEE Transactions on Wireless Communications.
[30] T. Luu,et al. S -wave scattering of strangeness − 3 baryons , 2012, 1201.3596.
[31] Ashutosh Sabharwal,et al. Distributed Full-Duplex via Wireless Side-Channels: Bounds and Protocols , 2012, IEEE Transactions on Wireless Communications.
[32] Dong Wang,et al. Centrality dependence of pi, K, and p production in Pb-Pb collisions at root s(NN)=2.76 TeV , 2013 .
[33] G. Ma,et al. Elliptic and triangular flow in p-Pb and peripheral Pb-Pb collisions from Parton scatterings. , 2014, Physical review letters.
[34] Risto Wichman,et al. In-Band Full-Duplex Wireless: Challenges and Opportunities , 2013, IEEE Journal on Selected Areas in Communications.
[35] J. Chen,et al. Production and ratio of $\pi$, K, p and $\Lambda$ in Pb + Pb collisions at $\sqrt{s_{NN}}$ = 2.76 TeV , 2013, 1312.3820.
[36] Ha H. Nguyen,et al. Joint Optimization of Cooperative Beamforming and Relay Assignment in Multi-User Wireless Relay Networks , 2014, IEEE Transactions on Wireless Communications.
[37] Victor C. M. Leung,et al. Energy Efficient Resource Allocation for OFDMA Full Duplex Distributed Antenna Systems with Energy Recycling , 2014, GLOBECOM 2014.
[38] T. Hatsuda,et al. Spin-2 NΩ dibaryon from lattice QCD , 2014, 1403.7284.
[39] T. B. Skaali,et al. Multi-strange baryon production at mid-rapidity in Pb-Pb collisions at √sNN=2.76 TeV , 2014 .
[40] Hongxia Huang,et al. Further study of the N Ω dibaryon within constituent quark models , 2015, 1507.07124.
[41] Nasim,et al. Measurement of interaction between antiprotons , 2015, Nature.
[42] Dong In Kim,et al. Medium access control design for full duplex wireless systems: challenges and approaches , 2015, IEEE Communications Magazine.
[43] Lie-Wen Chen,et al. Production of antimatter 5,6Li nuclei in central Au+Au collisions at sNN=200 GeV , 2015, 1509.05302.
[44] C. Ko,et al. Light (anti-)nuclei production and flow in relativistic heavy-ion collisions , 2015, 1510.03568.
[45] G. S. Averichev,et al. ΛΛ Correlation function in Au+Au collisions at √[S(NN)]=200 GeV. , 2014, Physical review letters.
[46] Saewoong Bahk,et al. Joint Subcarrier Assignment and Power Allocation in Full-Duplex OFDMA Networks , 2015, IEEE Trans. Wirel. Commun..
[47] A. Ohnishi,et al. Probing multistrange dibaryons with proton-omega correlations in high-energy heavy ion collisions , 2016, 1605.06765.
[48] Ji-Hoon Yun,et al. Intra and Inter-Cell Resource Management in Full-Duplex Heterogeneous Cellular Networks , 2016, IEEE Transactions on Mobile Computing.
[49] J. Chen,et al. Production of multistrange hadrons, light nuclei and hypertriton in central Au+Au collisions at sNN=11.5 and 200 GeV , 2015, 1511.08266.
[50] H. Clement. On the history of dibaryons and their final observation , 2016, 1610.05591.
[51] Matthias Rudolph Richter,et al. Production of light nuclei and anti-nuclei in pp and Pb-Pb collisions at energies available at the CERN Large Hadron Collider , 2016 .
[52] Zi-Wei Lin,et al. Predictions for √{s NN }=5.02 TeV Pb + Pb collisions from a multiphase transport model , 2016, 1601.08160.
[53] Michele Zorzi,et al. Resource allocation in OFDMA networks with half-duplex and imperfect full-duplex users , 2016, 2016 IEEE International Conference on Communications (ICC).
[54] Derrick Wing Kwan Ng,et al. Multi-objective resource allocation in full-duplex SWIPT systems , 2015, 2016 IEEE International Conference on Communications (ICC).
[55] Saewoong Bahk,et al. Resource allocation in full-duplex OFDMA networks: Approaches for full and limited CSIs , 2016, Journal of Communications and Networks.
[56] Derrick Wing Kwan Ng,et al. Optimal Joint Power and Subcarrier Allocation for Full-Duplex Multicarrier Non-Orthogonal Multiple Access Systems , 2016, IEEE Transactions on Communications.
[57] Leila Musavian,et al. Interference Efficiency: A New Metric to Analyze the Performance of Cognitive Radio Networks , 2017, IEEE Transactions on Wireless Communications.
[58] Prabhu Babu,et al. Majorization-Minimization Algorithms in Signal Processing, Communications, and Machine Learning , 2017, IEEE Transactions on Signal Processing.
[59] Mehdi Rasti,et al. Distributed Power Control Schemes for In-Band Full-Duplex Energy Harvesting Wireless Networks , 2017, IEEE Transactions on Wireless Communications.
[60] Ekram Hossain,et al. Decoupled Uplink-Downlink User Association in Multi-Tier Full-Duplex Cellular Networks: A Two-Sided Matching Game , 2017, IEEE Transactions on Mobile Computing.
[61] A. Ohnishi,et al. Exotic Hadrons from Heavy Ion Collisions , 2017, 1702.00486.
[62] Geoffrey Ye Li,et al. An Overview of Sustainable Green 5G Networks , 2016, IEEE Wireless Communications.
[63] Geoffrey Ye Li,et al. Results on Energy- and Spectral-Efficiency Tradeoff in Cellular Networks With Full-Duplex Enabled Base Stations , 2017, IEEE Transactions on Wireless Communications.
[64] Lie-Wen Chen,et al. Analytical coalescence formula for particle production in relativistic heavy-ion collisions , 2017, 1701.01935.
[65] Yugang Ma,et al. Influence of α-clustering nuclear structure on the rotating collision system , 2018, Nuclear Science and Techniques.
[66] D. Keane,et al. Antinuclei in heavy-ion collisions , 2018, Physics Reports.
[67] Sinya Aoki,et al. Most Strange Dibaryon from Lattice QCD. , 2017, Physical review letters.
[68] Y. Kamiya,et al. NΩ interaction: Meson exchanges, inelastic channels, and quasibound state , 2018, Physical Review C.
[69] Jie-Cheng Zhao,et al. Search for the chiral magnetic effect in heavy ion collisions , 2018, Nuclear Science and Techniques.
[70] Yugang Ma,et al. Ω and ϕ production in Au + Au collisions at $$\sqrt{s_{_\mathrm{NN}}} = 11.5$$sNN=11.5 and 7.7 GeV in a dynamical quark coalescence model , 2018 .
[71] Yugang Ma,et al. Explore the QCD phase transition phenomena from a multiphase transport model , 2018, Science China Physics, Mechanics & Astronomy.
[72] C. Ko,et al. Spectra and flow of light nuclei in relativistic heavy ion collisions at energies available at the BNL Relativistic Heavy Ion Collider and at the CERN Large Hadron Collider , 2018, Physical Review C.
[73] Song Zhang,et al. Charm hadron azimuthal angular correlations in Au + Au collisions at $$\sqrt{s_{\mathrm{NN}}} = 200$$ GeV from parton scatterings , 2019 .
[74] Yugang Ma,et al. Novel mechanism for electric quadrupole moment generation in relativistic heavy-ion collisions , 2019, Physics Letters B.
[75] B. Donigus,et al. Suppression of light nuclei production in collisions of small systems at the Large Hadron Collider , 2018, Physics Letters B.
[76] Mehdi Rasti,et al. Multi-Objective Optimization for Energy- and Spectral-Efficiency Tradeoff in In-Band Full-Duplex (IBFD) Communication , 2019, 2019 IEEE Global Communications Conference (GLOBECOM).
[77] Takumi Iritani,et al. NΩ dibaryon from lattice QCD near the physical point , 2018, Physics Letters B.
[78] G. S. Averichev,et al. Beam energy dependence of (anti-)deuteron production in Au + Au collisions at the BNL Relativistic Heavy Ion Collider , 2019, Physical Review C.
[79] Derrick Wing Kwan Ng,et al. A Novel Performance Tradeoff in Heterogeneous Networks: A Multi-Objective Approach , 2019, IEEE Wireless Communications Letters.
[80] G. S. Averichev,et al. The proton–Ω correlation function in Au + Au collisions at sNN=200GeV , 2019, Physics Letters B.
[81] Jun Xu,et al. Hadronization using the Wigner function approach for a multiphase transport model , 2019, Physical Review C.
[82] Sheyda Zarandi,et al. Joint Resource Allocation and Offloading Decision in Mobile Edge Computing , 2019, IEEE Communications Letters.
[83] Derrick Wing Kwan Ng,et al. Antenna Selection Strategy for Energy Efficiency Maximization in Uplink OFDMA Networks: A Multi-Objective Approach , 2020, IEEE Transactions on Wireless Communications.
[84] Derrick Wing Kwan Ng,et al. Joint User Association and Resource Allocation in the Uplink of Heterogeneous Networks , 2019, IEEE Wireless Communications Letters.
[85] Yu-Chen Liu,et al. Anomalous chiral transports and spin polarization in heavy-ion collisions , 2020, 2003.12482.
[86] A. Ohnishi,et al. Probing ΩΩ and pΩ dibaryons with femtoscopic correlations in relativistic heavy-ion collisions , 2019, Physical Review C.