- [1]
ATLAS Collaboration, Phys. Lett. B,716: 1-29 (2012), arXiv:1207.7214[hep-ex
- [2]
CMS Collaboration, Phys. Lett. B,716: 30-61 (2012), arXiv:1207.7235[hep-ex
- [3]
ATLAS Collaboration, Phys. Lett. B,726: 88-119 (2013), arXiv:1307.1427[hep-ex
- [4]
ATLAS Collaboration, Phys. Lett. B,726: 120-144 (2013), arXiv:1307.1432[hep-ex
- [5]
CMS Collaboration, JHEP,1306: 081 (2013), arXiv:1303.4571[hep-ex
- [6]
CMS Collaboration, Nature Phys.,10: (2014), arXiv:1401.6527[hep-ex
- [7]
CMS Collaboration, Phys. Rev. D,92: 012004 (2015), arXiv:1411.3441[hep-ex
- [8]
ATLAS and CMS Collaborations, JHEP,08: 045 (2016), arXiv:1606.02266[hep-ex
- [9]
ATLAS and CMS Collaborations, Phys. Rev. Lett.,114: 191803 (2015), arXiv:1503.07589[hep-ex
- [10]
ATLAS Collaboration, Projections for measurements of Higgs boson signal strengths and coupling parameters with the ATLAS detector at a HL-LHC, ATL-PHYS-PUB-2014-016 (2014) http://cds.cern.ch/record/1956710
- [11]
CMS Collaboration, Projected Performance of an Upgraded CMS Detector at the LHC and HL-LHC: Contribution to the Snowmass Process, arXiv:1307.7135[hep-ex]. http://www.slac.stanford.edu/econf/C1307292/docs/submittedArxivFiles/1307.7135.pdf
- [12]
CEPC Study Group, CEPC Conceptual Design Report, arXiv:1809.00285[physics.acc-ph]
- [13]
ILD Concept Group-Linear Collider Collaboration, The International Large Detector: Letter of Intent, arXiv:1006.3396[hep-ex]
- [14]
T. Behnke, J. E. Brau, P. N. Burrows, J. Fuster, M. Peskin, et al, The International Linear Collider Technical Design Report-Volume 4: Detectors, arXiv:1306.6329[physics.ins-det]
- [15]
CEPC-SPPC Study Group, CEPC-SPPC Preliminary Conceptual Design Report. 1. Physics and Detector (2015), http://cepc.ihep.ac.cn/preCDR/volume.html
- [16]
P. Janot, Particle Flow Event Reconstruction from LEP to LHC, Presented at Excellence in Detectors and Instrumentation Technologies workshop, CERN (2011), https://indico.cern.ch/event/96989/contribution/15
- [17]
M. Minard, Jet energy measurement with the ALEPH detector at LEP2, Presented at CALOR2002 Conference, Pasadena, California, USA (2002), http://inspirehep.net/record/608013
- [18]
M. Thomson, Nucl. Instrum. Meth. A,611: 25 (2009), arXiv:0907.3577[physics.ins-det
- [19]
M. Ruan and H. Videau, Arbor, a new approach of the Particle Flow Algorithm, arXiv:1403.4784[physics.ins-det]
- [20]
CMS Collaboration, Particle-Flow Event Reconstruction in CMS and Performance for Jets, Taus, and MET, CMS-PAS-PFT-09-001 (2009), http://cds.cern.ch/record/1194487
- [21]
F. Beaudette, The CMS Particle Flow Algorithm, pp. 295-304. Proceedings, International Conference on Calorimetry for the High Energy Frontier (CHEF 2013): Paris, France, April 22-25, 2013, arXiv:1401.8155[hep-ex]
- [22]
P. Mora de Freitas and H. Videau, Detector simulation with MOKKA/GEANT4: Present and future, Presented at the International Workshop on physics and experiments with future electron-positron linear colliders, Jeju Island, Korea (2002), http://inspirehep.net/record/609687
- [23]
S. Agostinelli et al, Nucl. Instrum. Meth. A,506: 250 (2003)
- [24]
M. Ruan et al, Eur. Phys. J. C,78: 426 (2018)
- [25]
H. Zhao, Y.-F. Zhu, C.-D. Fu, D. Yu, and M.-Q. Ruan, The Higgs Signatures at the CEPC CDR Baseline, arXiv:1806.04992[hep-ex]
- [26]
D. Yu, M. Ruan, V. Boudry, and H. Videau, Eur. Phys. J. C,77: 591 (2017), arXiv:1701.07542[physics.ins-det
- [27]
S. Catani, Y. L. Dokshitzer, M. Olsson, G. Turnock, and B. Webber, Phys. Lett. B,269: 432 (1991)
- [28]
ATLAS Collaboration, Eur. Phys. J. C,73: 2306 (2013), arXiv:1210.6210[hep-ex
- [29]
CMS Collaboration, JINST,12: P02014 (2017), arXiv:1607.03663[hep-ex
- [30]
T. Tanabe and T. Suehara, LCFIPlus, Presented at ILD workshop at Kyushu University (2012). https://agenda.linearcollider.org/event/5496/session/1/contribution/16.
- [31]
LHC Higgs Cross Section Working Group, Handbook of LHC Higgs Cross Sections: 1. Inclusive Observables, arXiv: 1101.0593[hep-ph]
- [32]
LHC Higgs Cross Section Working Group, Handbook of LHC Higgs Cross Sections: 2. Differential Distributions, arXiv: 1201.3084[hep-ph]
- [33]
LHC Higgs Cross Section Working Group, Handbook of LHC Higgs Cross Sections: 3. Higgs Properties, arXiv: 1307.1347[hep-ph]
- [34]
W. Kilian, T. Ohl, and J. Reuter, Eur. Phys. J. C,71: 1742 (2011), arXiv:0708.4233[hep-ph
- [35]
C. M. Carloni Calame, G. Montagna, O. Nicrosini, and F. Piccinini, Nucl. Phys. Proc. Suppl.,131: 48-55 (2004), arXiv:hep-ph/0312014
- [36]
S. Aplin, J. Engels, and F. Gaede, A production system for massive data processing in ILCSoft,. http://inspirehep.net/record/889841
- [37]
D. Asner, T. Barklow, C. Calancha, K. Fujii, N. Graf, et al., ILC Higgs White Paper, arXiv:1310.0763[hep-ph].
- [38]
Y. Haddad, Feasibility of a minimum bias analysis of e+e−→ ZH → qq+X at a 250 GeV ILC, 010201-44 Chinese Physics C, to be publishing, arXiv:1404.3164[hep-ph]
- [39]
M. Oreglia, A Study of the Reactions ψ’→ γγψ, SLAC-R-0236(1980), http://www.slac.stanford.edu/cgi-wrap/getdoc/slac-r-23\6.pdf
- [40]
ATLAS Collaboration, Submitted to: Phys. Lett. B, (2018), arXiv:1808.08238[hep-ex
- [41]
CMS Collaboration, Submitted to: Phys. Rev. Lett., (2018), arXiv:1808.08242[hep-ex
- [42]
R. E. Shrock and M. Suzuki, Phys. Lett. B,110: 250 (1982)
- [43]
K. Griest and H. E. Haber, Phys. Rev. D,37: 719 (1988)
- [44]
C. Englert, T. Plehn, D. Zerwas, and P. M. Zerwas, Phys. Lett. B,703: 298-305 (2011), arXiv:1106.3097[hep-ph
- [45]
C. Bonilla, J. W. F. Valle, and J. C. Romo, Phys. Rev. D,91: 113015 (2015), arXiv:1502.01649[hep-ph
- [46]
ALEPH, Phys. Rept.,532: 119 (2013), arXiv:1302.3415[hep-ex
- [47]
S. Dawson, A. Gritsan, H. Logan, J. Qian, C. Tully et al, Working Group Report: Higgs Boson, arXiv:1310.8361[hep-ex]
- [48]
LHC Higgs Cross Section Working Group, Handbook of LHC Higgs Cross Sections: 4. Deciphering the Nature of the Higgs Sector, arXiv:1610.07922[hep-ph]
- [49]
T. Han, Z. Liu, and J. Sayre, Phys. Rev. D,89: 113006 (2014), arXiv:1311.7155[hep-ph
- [50]
M. E. Peskin, Estimation of LHC and ILC Capabilities for Precision Higgs Boson Coupling Measurements, arXiv:1312.4974[hep-ph]
- [51]
P. P. Giardino, K. Kannike, I. Masina, M. Raidal, and A. Strumia, JHEP,05: 046 (2014), arXiv:1303.3570[hep-ph
- [52]
G. Belanger, B. Dumont, U. Ellwanger, J. F. Gunion, and S. Kraml, Phys. Rev. D,88: 075008 (2013), arXiv:1306.2941[hep-ph
- [53]
P. Bechtle, S. Heinemeyer, O. Stal, T. Stefaniak, and G. Weiglein, JHEP,11: 039 (2014), arXiv:1403.1582[hep-ph
- [54]
K. Cheung, J. S. Lee, and P.-Y. Tseng, Phys. Rev. D,90: 095009 (2014), arXiv:1407.8236[hep-ph
- [55]
S. Fichet and G. Moreau, Nucl. Phys. B,905: 391-446 (2016), arXiv:1509.00472[hep-ph
- [56]
R. Lafaye, T. Plehn, M. Rauch, and D. Zerwas, Phys. Rev. D,96(no. 7): 075044 (2017), arXiv:1706.02174[hep-ph
- [57]
V. Barger, T. Han, P. Langacker, B. McElrath, and P. Zerwas, Phys. Rev. D,67: 115001 (2003), arXiv:hep-ph/0301097
- [58]
T. Corbett, O. J. P. Eboli, J. Gonzalez-Fraile, and M. C. Gonzalez-Garcia, Phys. Rev. D,87: 015022 (2013), arXiv:1211.4580[hep-ph
- [59]
J. Elias-Miro, J. R. Espinosa, E. Masso, and A. Pomarol, JHEP,11: 066 (2013), arXiv:1308.1879[hep-ph
- [60]
A. Pomarol and F. Riva, JHEP,01: 151 (2014), arXiv:1308.2803[hep-ph
- [61]
G. Amar, S. Banerjee, S. von Buddenbrock, A. S. Cornell, T. Mandal, B. Mellado, and B. Mukhopadhyaya, JHEP,02: 128 (2015), arXiv:1405.3957[hep-ph
- [62]
J. Ellis, V. Sanz, and T. You, JHEP,03: 157 (2015), arXiv:1410.7703[hep-ph
- [63]
A. Falkowski, Pramana,87: 39 (2016), arXiv:1505.00046[hep-ph
- [64]
A. Butter, O. J. P. Éboli, J. Gonzalez-Fraile, M. C. Gonzalez-Garcia, T. Plehn, and M. Rauch, JHEP,07: 152 (2016), arXiv:1604.03105[hep-ph
- [65]
N. Craig, M. Farina, M. McCullough, and M. Perelstein, JHEP,03: 146 (2015), arXiv:1411.0676[hep-ph
- [66]
M. Beneke, D. Boito, and Y.-M. Wang, JHEP,11: 028 (2014), arXiv:1406.1361[hep-ph
- [67]
N. Craig, J. Gu, Z. Liu, and K. Wang, JHEP,03: 050 (2016), arXiv:1512.06877[hep-ph
- [68]
J. Ellis and T. You, JHEP,03: 089 (2016), arXiv:1510.04561[hep-ph
- [69]
S.-F. Ge, H.-J. He, and R.-Q. Xiao, JHEP,10: 007 (2016), arXiv:1603.03385[hep-ph
- [70]
J. Ellis, P. Roloff, V. Sanz, and T. You, Dimension-6 Operator Analysis of the CLIC Sensitivity to New Physics, arXiv:1701.04804[hep-ph]
- [71]
G. Durieux, C. Grojean, J. Gu, and K. Wang, JHEP,09: 014 (2017), arXiv:1704.02333[hep-ph
- [72]
T. Barklow, K. Fujii, S. Jung, R. Karl, J. List, T. Ogawa, M. E. Peskin, and J. Tian, Phys. Rev. D,97(no. 5): 053003 (2018), arXiv:1708.08912[hep-ph
- [73]
T. Barklow, K. Fujii, S. Jung, M. E. Peskin, and J. Tian, Phys. Rev. D,97(no. 5): 053004 (2018), arXiv:1708.09079[hep-ph
- [74]
S. Di Vita, G. Durieux, C. Grojean, J. Gu, Z. Liu, G. Panico, M. Riembau, and T. Vantalon, JHEP,02: 178 (2018), arXiv:1711.03978[hep-ph
- [75]
W. H. Chiu, S. C. Leung, T. Liu, K.-F. Lyu, and L.-T. Wang, JHEP,05: 081 (2018), arXiv:1711.04046[hep-ph
- [76]
J. Ellis, C. W. Murphy, V. Sanz, and T. You, JHEP,06: 146 (2018), arXiv:1803.03252[hep-ph
- [77]
G. Durieux, J. Gu, E. Vryonidou, and C. Zhang, Chin. Phys. C,42(no. 12): 123107 (2018), arXiv:1809.03520[hep-ph
- [78]
J. Gao, JHEP,01: 038 (2018), arXiv:1608.01746[hep-ph
- [79]
LHC Higgs Cross Section Working Group, LHC HXSWG interim recommendations to explore the coupling structure of a Higgs-like particle, Chinese Physics C, to be publishing, arXiv:1209.0040[hep-ph]
- [80]
CMS Collaboration, Phys. Rev. Lett.,120: 231801 (2018), arXiv:1804.02610[hep-ex
- [81]
ATLAS Collaboration, Phys. Lett. B,784: 173-191 (2018), arXiv:1806.00425[hep-ex
- [82]
A. Banfi, A. Martin, and V. Sanz, JHEP,1408: 053 (2014), arXiv:1308.4771[hep-ph
- [83]
A. Azatov and A. Paul, JHEP,1401: 014 (2014), arXiv:1309.5273[hep-ph
- [84]
C. Grojean, E. Salvioni, M. Schlaffer, and A. Weiler, JHEP,1405: 022 (2014), arXiv:1312.3317[hep-ph
- [85]
M. Buschmann, C. Englert, D. Goncalves, T. Plehn, and M. Spannowsky, Phys. Rev. D,90: 013010 (2014), arXiv:1405.7651[hep-ph
- [86]
J. Ellis, V. Sanz, and T. You, JHEP,1407: 036 (2014), arXiv:1404.3667[hep-ph
- [87]
M. Klute, R. Lafaye, T. Plehn, M. Rauch, and D. Zerwas, Europhys. Lett.,101: 51001 (2013), arXiv:1301.1322[hep-ph
- [88]
K. Fujii et al, Physics Case for the 250 GeV Stage of the International Linear Collider, arXiv:1710.07621[hep-ex]
- [89]
Q.-F. Sun, F. Feng, Y. Jia, and W.-L. Sang, Phys. Rev. D,96(no. 5): 051301 (2017), arXiv:1609.03995[hep-ph
- [90]
Y. Gong, Z. Li, X. Xu, L. L. Yang, and X. Zhao, Phys. Rev. D,95(no. 9): 093003 (2017), arXiv:1609.03955[hep-ph
- [91]
G. P. Lepage, P. B. Mackenzie, and M. E. Peskin, Expected Precision of Higgs Boson Partial Widths within the Standard Model, arXiv:1404.0319[hep-ph]
- [92]
A. Denner, S. Heinemeyer, I. Puljak, D. Rebuzzi, and M. Spira, Eur. Phys. J. C,71: 1753 (2011), arXiv:1107.5909[hep-ph
- [93]
L. G. Almeida, S. J. Lee, S. Pokorski, and J. D. Wells, Phys. Rev. D,89: 033006 (2014), arXiv:1311.6721[hep-ph
- [94]
C. Bernaciak, T. Plehn, P. Schichtel, and J. Tattersall, Phys. Rev. D,91: 035024 (2015), arXiv:1411.7699[hep-ph
- [95]
S. M. Barr and A. Zee, Phys. Rev. Lett.,65: 21-24 (1990)
- [96]
J. Fan and M. Reece, JHEP,06: 004 (2013), arXiv:1301.2597[hep-ph
- [97]
ACME Collaboration, Science,343: 269-272 (2014), arXiv:1310.7534[physics.atom-ph
- [98]
Y. T. Chien, V. Cirigliano, W. Dekens, J. de Vries, and E. Mereghetti, JHEP,02: 011 (2016), arXiv:1510.00725[hep-ph
- [99]
R. Harnik, A. Martin, T. Okui, R. Primulando, and F. Yu, Phys. Rev. D,88: 076009 (2013), arXiv:1308.1094[hep-ph
- [100]
K. Hagiwara, S. Ishihara, R. Szalapski, and D. Zeppenfeld, Phys. Rev. D,48: 2182-2203 (1993)
- [101]
G. Gounaris et al, Triple gauge boson couplings, arXiv:hep-ph/9601233[hep-ph]
- [102]
L. Bian, J. Shu, and Y. Zhang, JHEP,09: 206 (2015), arXiv:1507.02238[hep-ph
- [103]
A. Falkowski, Higgs Basis: Proposal for an EFT basis choice for LHC HXSWG, LHCHXSWG-INT-2015-001(March, 2015), https://cds.cern.ch/record/2001958
- [104]
ATLAS Collaboration, Projections for measurements of Higgs boson cross sections, branching ratios and coupling parameters with the ATLAS detector at a HL-LHC, ATL-PHYS-PUB-2013-014(2013). https://cds.cern.ch/record/1611186
- [105]
ATLAS Collaboration, HL-LHC projections for signal and background yield measurements of the H → γγ when the Higgs boson is produced in association with t quarks, W or Z bosons, ATL-PHYS-PUB-2014-012(2014). https://cds.cern.ch/record/1741011
- [106]
ATLAS Collaboration, Update of the prospects for the H → Zγ search at the High-Luminosity LHC, ATL-PHYS-PUB-2014-006(2014). https://cds.cern.ch/record/1703276
- [107]
ATLAS Collaboration, Prospects for the study of the Higgs boson in the VH(bb) channel at HL-LHC, ATL-PHYS-PUB-2014-011(2014). https://cds.cern.ch/record/1740962
- [108]
ATLAS Collaboration, Studies of the VBF H → τlτhadanalysis at High Luminosity LHC conditions, ATL-PHYS-PUB-2014-018(2014). https://cds.cern.ch/record/1956732
- [109]
A. Falkowski, M. Gonzalez-Alonso, A. Greljo, and D. Marzocca, Phys. Rev. Lett.,116: 011801 (2016), arXiv:1508.00581[hep-ph
- [110]
R. Contino, A. Falkowski, F. Goertz, C. Grojean, and F. Riva, JHEP,07: 144 (2016), arXiv:1604.06444[hep-ph
- [111]
A. Falkowski, M. Gonzalez-Alonso, A. Greljo, D. Marzocca, and M. Son, JHEP,02: 115 (2017), arXiv:1609.06312[hep-ph
- [112]
Z. Zhang, Phys. Rev. Lett.,118: 011803 (2017), arXiv:1610.01618[hep-ph
- [113]
ATLAS Collaboration, Search for the Standard Model Higgs and Z Boson decays to J/ψ γ: HL-LHC projections, ATL-PHYS-PUB-2015-043(2015). http://cds.cern.ch/record/2054550
- [114]
G. T. Bodwin, F. Petriello, S. Stoynev, and M. Velasco, Phys. Rev. D,88: 053003 (2013), arXiv:1306.5770[hep-ph
- [115]
G. Perez, Y. Soreq, E. Stamou, and K. Tobioka, Phys. Rev. D,92: 033016 (2015), arXiv:1503.00290[hep-ph
- [116]
I. Brivio, F. Goertz, and G. Isidori, Phys. Rev. Lett.,115: 211801 (2015), arXiv:1507.02916[hep-ph
- [117]
F. Bishara, U. Haisch, P. F. Monni, and E. Re, Constraining Light-Quark Yukawa Couplings from Higgs Distributions, arXiv:1606.09253[hep-ph]
- [118]
L. M. Carpenter, T. Han, K. Hendricks, Z. Qian, and N. Zhou, Phys. Rev. D,95: 053003 (2017), arXiv:1611.05463[hep-ph
- [119]
ATLAS Collaboration, Study of the double Higgs production channel H(→ bb)H(→ γγ) with the ATLAS experiment at the HL-LHC, ATL-PHYS-PUB-2017-001, CERN, Geneva, 010201-46 Chinese Physics C, 010201 Jan, 2017. https://cds.cern.ch/record/2243387
- [120]
R. Contino et al, CERN Yellow Report,255-440 (2017), arXiv:1606.09408[hep-ph
- [121]
M. McCullough, Phys. Rev. D,90: 015001 (2014), arXiv:1312.3322[hep-ph
- [122]
S. Di Vita, C. Grojean, G. Panico, M. Riembau, and T. Vantalon, JHEP,09: 069 (2017), arXiv:1704.01953[hep-ph
- [123]
A. Azatov, R. Contino, G. Panico, and M. Son, Phys. Rev. D,92: 035001 (2015), arXiv:1502.00539[hep-ph
- [124]
Z. Liu, I. Low, and L.-T. Wang, Higgs-Top Interactions at Future Circular e+e−Colliders, arXiv:2018.nnnn
- [125]
G. Li, H.-R. Wang, and S.-h. Zhu, Probing CP-violating htt coupling in e+e−→ hγ, arXiv:1506.06453[hep-ph]
- [126]
E. Vryonidou and C. Zhang, Dimension-six electroweak top-loop effects in Higgs production and decay, arXiv:1804.09766[hep-ph]
- [127]
G. Durieux, M. Perello, M. Vos, and C. Zhang, JHEP,10: 168 (2018), arXiv:1807.02121[hep-ph
- [128]
S. Boselli, R. Hunter, and A. Mitov, Prospects for the determination of the top-quark Yukawa coupling at future e+e−colliders, arXiv:1805.12027[hep-ph]
- [129]
J. A. Aguilar-Saavedra, Nucl. Phys. B,812: 181-204 (2009), arXiv:0811.3842[hep-ph
- [130]
J. A. Aguilar-Saavedra, Nucl. Phys. B,821: 215-227 (2009), arXiv:0904.2387[hep-ph
- [131]
Y. Gao, A. V. Gritsan, Z. Guo, K. Melnikov, M. Schulze, and N. V. Tran, Phys. Rev. D,81: 075022 (2010), arXiv:1001.3396[hep-ph
- [132]
S. Bolognesi, Y. Gao, A. V. Gritsan, K. Melnikov, M. Schulze, N. V. Tran, and A. Whitbeck, Phys. Rev. D,86: 095031 (2012), arXiv:1208.4018[hep-ph
- [133]
I. Anderson, et al, Phys. Rev. D,89: 035007 (2014), arXiv:1309.4819[hep-ph
- [134]
J. Alwall, P. Demin, S. de Visscher, R. Frederix, M. Herquet, F. Maltoni, T. Plehn, D. L. Rainwater, and T. Stelzer, JHEP,09: 028 (2007), arXiv:0706.2334[hep-ph
- [135]
D. Curtin, R. Essig, S. Gori, P. Jaiswal, A. Katz, et al, Phys.Rev. D,90: 075004 (2014), arXiv:1312.4992[hep-ph
- [136]
Z. Liu, L.-T. Wang, and H. Zhang, Exotic decays of the 125 GeV Higgs boson at future e+e−lepton colliders, arXiv:1612.09284[hep-ph]
- [137]
J. Liu, Z. Liu, and L.-T. Wang, Long-lived particles at the LHC: catching them in time, arXiv:1805.05957[hep-ph]
- [138]
A. Thamm, R. Torre, and A. Wulzer, JHEP,07: 100 (2015), arXiv:1502.01701[hep-ph
- [139]
J. Gu, H. Li, Z. Liu, S. Su, and W. Su, JHEP,12: 153 (2017), arXiv:1709.06103[hep-ph
- [140]
J. Fan, M. Reece, and L.-T. Wang, Precision Natural SUSY at CEPC, FCC-ee, and ILC, arXiv:1412.3107[hep-ph]
- [141]
R. Essig, P. Meade, H. Ramani, and Y.-M. Zhong, JHEP,09: 085 (2017), arXiv:1707.03399[hep-ph
- [142]
Z. Chacko, H.-S. Goh, and R. Harnik, Phys. Rev. Lett.,96: 231802 (2006), arXiv:hep-ph/0506256
- [143]
G. Burdman, Z. Chacko, H.-S. Goh, and R. Harnik, JHEP,02: 009 (2007), arXiv:hep-ph/0609152
- [144]
N. Craig, C. Englert, and M. McCullough, Phys. Rev. Lett.,111: 121803 (2013), arXiv:1305.5251[hep-ph
- [145]
K. Kajantie, M. Laine, K. Rummukainen, and M. E. Shaposhnikov, Phys. Rev. Lett.,77: 2887-2890 (1996), arXiv:hep-ph/9605288
- [146]
S. Profumo, M. J. Ramsey-Musolf, C. L. Wainwright, and P. Winslow, Phys. Rev. D,91: 035018 (2015), arXiv:1407.5342[hep-ph
- [147]
A. Katz and M. Perelstein, JHEP,07: 108 (2014), arXiv:1401.1827[hep-ph
- [148]
A. Noble and M. Perelstein, Phys. Rev. D,78: 063518 (2008), arXiv:0711.3018[hep-ph
- [149]
B. Henning, X. Lu, and H. Murayama, What do precision Higgs measurements buy us?, arXiv:1404.1058[hep-ph]
- [150]
S. Profumo, M. J. Ramsey-Musolf, and G. Shaughnessy, JHEP,08: 010 (2007), arXiv:0705.2425[hep-ph
- [151]
D. Curtin, P. Meade, and C.-T. Yu, JHEP,11: 127 (2014), arXiv:1409.0005[hep-ph
- [152]
Q.-H. Cao, F. P. Huang, K.-P. Xie, and X. Zhang, Chin. Phys. C,42: 023103 (2018), arXiv:1708.04737[hep-ph
- [153]
P. Huang, A. J. Long, and L.-T. Wang, Phys. Rev. D,94: 075008 (2016), arXiv:1608.06619[hep-ph