CMS logoCMS event Hgg
Compact Muon Solenoid
LHC, CERN

CMS-EXO-16-057 ; CERN-EP-2018-007
Search for narrow resonances in the b-tagged dijet mass spectrum in proton-proton collisions at $\sqrt{s} = $ 8 TeV
Phys. Rev. Lett. 120 (2018) 201801
Abstract: A search for narrow resonances decaying to bottom quark-antiquark pairs is presented, using a data sample of proton-proton collisions at $\sqrt{s} = $ 8 TeV corresponding to an integrated luminosity of 19.7 fb$^{-1}$. The search is extended to masses lower than those reached in typical searches for resonances decaying into jet pairs at the LHC, by taking advantage of triggers that identify jets originating from bottom quarks. No significant excess of events is observed above the background predictions. Limits are set on the product of cross section and branching fraction to bottom quarks for spin 0, 1, and 2 resonances in the mass range of 325-1200 GeV. These results significantly improve on the limits for resonances decaying into jet pairs in the 325-500 GeV mass range.
Figures Summary References CMS Publications
Figures

png pdf
Figure 1:
The products of acceptance and efficiency for simulated signal events in SR1 and SR2, separately for the scalar, Z', and RS graviton signal models. The shaded bands represent the statistical uncertainties.

png pdf
Figure 2:
The dijet invariant mass distributions in SR1 (left) and SR2 (right), shown with the background prediction derived from a fit using an empirical function under the background-only hypothesis. Representative examples of signal distributions are also shown, each normalized to a visible cross section of 1 pb. The bottom panels show the difference between the data and the background estimate, divided by the statistical uncertainty in the estimated background.

png pdf
Figure 2-a:
The dijet invariant mass distribution in SR1, shown with the background prediction derived from a fit using an empirical function under the background-only hypothesis. Representative examples of signal distributions are also shown, each normalized to a visible cross section of 1 pb. The bottom panel shows the difference between the data and the background estimate, divided by the statistical uncertainty in the estimated background.

png pdf
Figure 2-b:
The dijet invariant mass distribution in SR2, shown with the background prediction derived from a fit using an empirical function under the background-only hypothesis. Representative examples of signal distributions are also shown, each normalized to a visible cross section of 1 pb. The bottom panel shows the difference between the data and the background estimate, divided by the statistical uncertainty in the estimated background.

png pdf
Figure 3:
Observed and expected 95% CL upper limits on the product of cross section and branching fraction to bottom quark-antiquark pairs for a scalar resonance (left), Z' boson (middle), and RS graviton (right) signal models, as functions of resonance mass. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.

png pdf
Figure 3-a:
Observed and expected 95% CL upper limits on the product of cross section and branching fraction to bottom quark-antiquark pairs for a scalar resonance signal model, as functions of resonance mass. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.

png pdf
Figure 3-b:
Observed and expected 95% CL upper limits on the product of cross section and branching fraction to bottom quark-antiquark pairs for a Z' boson signal model, as functions of resonance mass. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.

png pdf
Figure 3-c:
Observed and expected 95% CL upper limits on the product of cross section and branching fraction to bottom quark-antiquark pairs for a RS graviton signal model, as functions of resonance mass. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.

png pdf
Figure 4:
Left: The 95% CL upper limits (solid line) on the universal coupling ${g'_ {\mathrm {q}}} $ between the leptophobic Z' boson and quarks. Limits from other experiments [2,8,9,18] and earlier CMS analyses [33,34,37], are also shown, along with an indirect constraint from the Z boson width [74]. Right: Expected (dashed lines) and observed (solid lines) 95% CL upper limits on the simplified model variable $\zeta $. The limits are shown for $ {\mathrm {u}} {\overline {\mathrm {u}}} \to {\mathrm {Z}'}$ and $ {\mathrm {d}} {\overline {\mathrm {d}}} \to {\mathrm {Z}'}$ individually, as well as for $ {\mathrm {p}} {\mathrm {p}}\to {\mathrm {Z}'}$, assuming a universal quark coupling. The $\zeta $ values for the Z' boson model with $ {g'_ {\mathrm {q}}} = $ 0.25 are also shown. The hatched red band represents the envelope of limits for theoretical models that predict an $s$-channel production of a Z' resonance with arbitrary couplings to up and down quarks. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.

png pdf
Figure 4-a:
The 95% CL upper limits (solid line) on the universal coupling ${g'_ {\mathrm {q}}} $ between the leptophobic Z' boson and quarks. Limits from other experiments [2,8,9,18] and earlier CMS analyses [33,34,37], are also shown, along with an indirect constraint from the Z boson width [74]. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.

png pdf
Figure 4-b:
Expected (dashed lines) and observed (solid lines) 95% CL upper limits on the simplified model variable $\zeta $. The limits are shown for $ {\mathrm {u}} {\overline {\mathrm {u}}} \to {\mathrm {Z}'}$ and $ {\mathrm {d}} {\overline {\mathrm {d}}} \to {\mathrm {Z}'}$ individually, as well as for $ {\mathrm {p}} {\mathrm {p}}\to {\mathrm {Z}'}$, assuming a universal quark coupling. The $\zeta $ values for the Z' boson model with $ {g'_ {\mathrm {q}}} = $ 0.25 are also shown. The hatched red band represents the envelope of limits for theoretical models that predict an $s$-channel production of a Z' resonance with arbitrary couplings to up and down quarks. The discontinuity in the limits at 700 GeV is associated with a change in the acceptance from SR1 to SR2.
Summary
In summary, a search for new resonances decaying to bottom quark-antiquark pairs produced in 8 TeV proton-proton collisions has been presented. Using triggers that identify jets originating from bottom quarks, the search probes signal masses as low as 325 GeV. No statistically significant excesses above the background predictions are observed in the entire invariant mass range studied, 325--1200 GeV. Upper limits are set on the production cross section of scalar, vector, and tensor resonances. The limits are also interpreted in the context of a simplified model of a leptophobic Z' boson with a universal coupling ${g'_ {\mathrm {q}}} $ to quarks. Values of ${g'_ {\mathrm {q}}} $ above 0.11--0.18 are excluded for Z' boson masses below 500 GeV, improving on the previous best limits in this mass range, which date back to the CDF experiment. The first experimental limits on the parameter $\zeta$ of a simplified $s$-channel resonance framework [80] have been obtained, making possible the reinterpretation of the limits in a variety of theoretical models corresponding to different resonance production and decay mechanisms.
References
1 UA1 Collaboration Two-jet mass distributions at the CERN proton-antiproton collider PLB 209 (1988) 127
2 UA2 Collaboration A measurement of two-jet decays of the $ W $ and $ Z $ bosons at the CERN $ {\bar{p} p} $ collider Z. Phys. C 49 (1991) 17
3 UA2 Collaboration A search for new intermediate vector mesons and excited quarks decaying to two jets at the CERN $ {\rm \bar{p} p} $ collider NPB 400 (1993) 3
4 CDF Collaboration The two-jet invariant mass-distribution at $ \sqrt{s} = $ 1.8 TeV PRD 41 (1990) 1722(R)
5 CDF Collaboration Search for quark compositeness, axigluons and heavy particles using the dijet invariant mass spectrum observed in $ {\rm \bar{p} p} $ collisions PRL 71 (1993) 2542
6 CDF Collaboration Search for new particles decaying to dijets in $ {\rm \bar{p} p} $ collisions at $ \sqrt{s} = $ 1.8 TeV PRL 74 (1995) 3538 hep-ex/9501001
7 CDF Collaboration Measurement of dijet angular distributions by the Collider Detector at Fermilab PRL 77 (1996) 5336 hep-ex/9609011
8 CDF Collaboration Search for new particles decaying to dijets at CDF PRD 55 (1997) 5263(R) hep-ex/9702004
9 CDF Collaboration Search for new particles decaying into dijets in proton-antiproton collisions at $ \sqrt{s} = $ 1.96 TeV PRD 79 (2009) 112002 0812.4036
10 D0 Collaboration Measurement of dijet angular distributions and search for quark compositeness PRL 80 (1998) 666 hep-ex/9707016
11 D0 Collaboration The dijet mass spectrum and a search for quark compositeness in $ {\rm \bar{p} p} $ collisions at $ \sqrt{s} = $ 1.8 TeV PRL 82 (1999) 2457 hep-ex/9807014
12 D0 Collaboration Search for new particles in the two-jet decay channel with the D0 detector PRD 69 (2004) 111101(R) hep-ex/0308033
13 ATLAS Collaboration Search for new particles in two-jet final states in 7 TeV proton-proton collisions with the ATLAS detector at the LHC PRL 105 (2010) 161801 1008.2461
14 ATLAS Collaboration Search for quark contact interactions in dijet angular distributions in pp collisions at $ \sqrt{s}= $ 7 TeV measured with the ATLAS detector PLB 694 (2011) 327 1009.5069
15 ATLAS Collaboration A search for new physics in dijet mass and angular distributions in pp collisions at $ \sqrt{s} = $ 7 TeV measured with the ATLAS detector New J. Phys. 13 (2011) 053044 1103.3864
16 ATLAS Collaboration Search for new physics in the dijet mass distribution using 1 fb$ ^{-1} $ of pp collision data at $ \sqrt{s}= $ 7 TeV collected by the ATLAS detector PLB 708 (2012) 37 1108.6311
17 ATLAS Collaboration ATLAS search for new phenomena in dijet mass and angular distributions using pp collisions at $ \sqrt{s}= $ 7 TeV JHEP 01 (2013) 029 1210.1718
18 ATLAS Collaboration Search for new phenomena in the dijet mass distribution using pp collision data at $ \sqrt{s}= $ 8 TeV with the ATLAS detector PRD 91 (2015) 052007 1407.1376
19 ATLAS Collaboration Search for new phenomena in dijet angular distributions in proton-proton collisions at $ \sqrt{s} = $ 8 TeV measured with the ATLAS detector PRL 114 (2015) 221802 1504.00357
20 ATLAS Collaboration Search for new phenomena in dijet mass and angular distributions from $ pp $ collisions at $ \sqrt{s} = $ 13 TeV with the ATLAS detector PLB 754 (2016) 302 1512.01530
21 ATLAS Collaboration Search for resonances in the mass distribution of jet pairs with one or two jets identified as $ b $-jets in proton--proton collisions at $ \sqrt{s}= $ 13 TeV with the ATLAS detector PLB 759 (2016) 229 1603.08791
22 ATLAS Collaboration Search for new phenomena in dijet events using 37 fb$ ^{-1} $ of $ pp $ collision data collected at $ \sqrt{s}= $ 13 TeV with the ATLAS detector PRD 96 (2017) 052004 1703.09127
23 CMS Collaboration Search for dijet resonances in 7 TeV pp collisions at CMS PRL 105 (2010) 211801 CMS-EXO-10-010
1010.0203
24 CMS Collaboration Search for quark compositeness with the dijet centrality ratio in pp collisions at $ \sqrt{s}= $ 7 TeV PRL 105 (2010) 262001 CMS-EXO-10-002
1010.4439
25 CMS Collaboration Measurement of dijet angular distributions and search for quark compositeness in pp collisions at $ \sqrt{s} = $ 7 TeV PRL 106 (2011) 201804 CMS-EXO-10-009
1102.2020
26 CMS Collaboration Search for resonances in the dijet mass spectrum from 7 TeV pp collisions at CMS PLB 704 (2011) 123 CMS-EXO-11-015
1107.4771
27 CMS Collaboration Search for quark compositeness in dijet angular distributions from pp collisions at $ \sqrt{s}= $ 7 TeV JHEP 05 (2012) 055 CMS-EXO-11-017
1202.5535
28 CMS Collaboration Search for narrow resonances and quantum black holes in inclusive and b-tagged dijet mass spectra from pp collisions at $ \sqrt{s}= $ 7 TeV JHEP 01 (2013) 013 CMS-EXO-11-094
1210.2387
29 CMS Collaboration Search for narrow resonances using the dijet mass spectrum in pp collisions at $ \sqrt{s} = $ 8 TeV PRD 87 (2013) 114015 CMS-EXO-12-016
1302.4794
30 CMS Collaboration Search for quark contact interactions and extra spatial dimensions using dijet angular distributions in proton-proton collisions at $ \sqrt{s} = $ 8 TeV PLB 746 (2015) 79 CMS-EXO-12-050
1411.2646
31 CMS Collaboration Search for resonances and quantum black holes using dijet mass spectra in proton-proton collisions at $ \sqrt{s} = $ 8 TeV PRD 91 (2015) 052009 CMS-EXO-12-059
1501.04198
32 CMS Collaboration Search for narrow resonances decaying to dijets in proton-proton collisions at $ \sqrt{s} = $ 13 TeV PRL 116 (2016) 071801 CMS-EXO-15-001
1512.01224
33 CMS Collaboration Search for narrow resonances in dijet final states at $ \sqrt{s}= $ 8 TeV with the novel CMS technique of data scouting PRL 117 (2016) 031802 CMS-EXO-14-005
1604.08907
34 CMS Collaboration Search for dijet resonances in proton-proton collisions at $ \sqrt{s} = $ 13 TeV and constraints on dark matter and other models PLB 769 (2017) 520 CMS-EXO-16-032
1611.03568
35 CMS Collaboration Search for new physics with dijet angular distributions in proton-proton collisions at $ \sqrt{s}= $ 13 TeV JHEP 07 (2017) 013 CMS-EXO-15-009
1703.09986
36 CMS Collaboration Search for low mass vector resonances decaying to quark-antiquark pairs in proton-proton collisions at $ \sqrt{s}= $ 13 TeV PRL 119 (2017) 111802 CMS-EXO-16-030
1705.10532
37 CMS Collaboration Search for low mass vector resonances decaying into quark-antiquark pairs in proton-proton collisions at $ \sqrt{s}= $ 13 TeV JHEP 01 (2018) 097 CMS-EXO-17-001
1710.00159
38 ATLAS Collaboration Search for light resonances decaying to boosted quark pairs and produced in association with a photon or a jet in proton-proton collisions at $ \sqrt{s}= $ 13 TeV with the ATLAS detector 1801.08769
39 C. T. Hill Topcolor assisted technicolor PLB 345 (1995) 483 hep-ph/9411426
40 L. Randall and R. Sundrum A large mass hierarchy from a small extra dimension PRL 83 (1999) 3370 hep-ph/9905221
41 L. Randall and R. Sundrum An alternative to compactification PRL 83 (1999) 4690 hep-th/9906064
42 H. Davoudiasl, J. L. Hewett, and T. G. Rizzo Experimental probes of localized gravity: On and off the wall PRD 63 (2001) 075004 hep-ph/0006041
43 J. F. Gunion, S. Dawson, H. E. Haber, and G. L. Kane The Higgs hunter?s guide Addison--Wesley
44 M. R. Buckley, D. Feld, and D. Goncalves Scalar simplified models for dark matter PRD 91 (2015) 015017 1410.6497
45 U. Haisch and E. Re Simplified dark matter top-quark interactions at the LHC JHEP 06 (2015) 078 1503.00691
46 CMS Collaboration The CMS trigger system JINST 12 (2017) P01020 CMS-TRG-12-001
1609.02366
47 CMS Collaboration The CMS experiment at the CERN LHC JINST 3 (2008) S08004 CMS-00-001
48 CMS Collaboration Particle-flow reconstruction and global event description with the CMS detector JINST 12 (2017) P10003 CMS-PRF-14-001
1706.04965
49 M. Cacciari, G. P. Salam, and G. Soyez The anti-$ k_t $ jet clustering algorithm JHEP 04 (2008) 063 0802.1189
50 M. Cacciari, G. P. Salam, and G. Soyez FastJet user manual EPJC 72 (2012) 1896 1111.6097
51 M. Cacciari and G. P. Salam Pileup subtraction using jet areas PLB 659 (2008) 119 0707.1378
52 CMS Collaboration Determination of jet energy calibration and transverse momentum resolution in CMS JINST 6 (2011) P11002 CMS-JME-10-011
1107.4277
53 CMS Collaboration Jet energy scale and resolution in the CMS experiment in pp collisions at 8 TeV JINST 12 (2017) P02014 CMS-JME-13-004
1607.03663
54 CMS Collaboration Jet performance in pp collisions at $ \sqrt{s} = $ 7 TeV CMS-PAS-JME-10-003
55 CMS Collaboration Identification of b-quark jets with the CMS experiment JINST 8 (2013) P04013 CMS-BTV-12-001
1211.4462
56 CMS Collaboration Performance of b tagging at $ \sqrt{s}= $ 8 TeV in multijet, $ {\rm t\bar t} $ and boosted topology events CMS-PAS-BTV-13-001
57 CMS Collaboration Description and performance of track and primary-vertex reconstruction with the CMS tracker JINST 9 (2014) P10009 CMS-TRK-11-001
1405.6569
58 T. Sjostrand, S. Mrenna, and P. Z. Skands A brief introduction to PYTHIA 8.1 CPC 178 (2008) 852 0710.3820
59 P. Skands, S. Carrazza, and J. Rojo Tuning PYTHIA 8.1: the Monash 2013 tune EPJC 74 (2014) 3024 1404.5630
60 CMS Collaboration Event generator tunes obtained from underlying event and multiparton scattering measurements EPJC 76 (2016) 155 CMS-GEN-14-001
1512.00815
61 J. Alwall et al. The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations JHEP 07 (2014) 079 1405.0301
62 NNPDF Collaboration Parton distributions for the LHC Run II JHEP 04 (2015) 040 1410.8849
63 R. D. Ball et al. Parton distributions with LHC data NPB 867 (2013) 244 1207.1303
64 T. Sjostrand, S. Mrenna, and P. Skands PYTHIA 6.4 physics and manual JHEP 05 (2006) 026 hep-ph/0603175
65 J. Pumplin et al. New generation of parton distributions with uncertainties from global QCD analysis JHEP 07 (2002) 012 hep-ph/0201195
66 CMS Collaboration Study of the underlying event at forward rapidity in pp collisions at $ \sqrt{s} = $ 0.9, 2.76, and 7 TeV JHEP 04 (2013) 072 CMS-FWD-11-003
1302.2394
67 GEANT4 Collaboration GEANT4---a simulation toolkit NIMA 506 (2003) 250
68 R. J. Barlow Extended maximum likelihood NIMA 297 (1990) 496
69 R. A. Fisher On the interpretation of $ \chi^2 $ from contingency tables, and the calculation of $ p $ J. Roy. Stat. Soc. 85 (1922) 87
70 A. D. Bukin Fitting function for asymmetric peaks 0711.4449
71 S. Alekhin et al. The PDF4LHC working group interim report 1101.0536
72 M. Botje et al. The PDF4LHC working group interim recommendations 1101.0538
73 CMS Collaboration CMS luminosity based on pixel cluster counting - summer 2013 update CMS-PAS-LUM-13-001 CMS-PAS-LUM-13-001
74 B. A. Dobrescu and C. Frugiuele Hidden GeV-scale interactions of quarks PRL 113 (2014) 061801 1404.3947
75 G. Cowan, K. Cranmer, E. Gross, and O. Vitells Asymptotic formulae for likelihood-based tests of new physics EPJC 71 (2011) 1554 1007.1727
76 T. Junk Confidence level computation for combining searches with small statistics NIMA 434 (1999) 435 hep-ex/9902006
77 A. L. Read Presentation of search results: The $ CL_s $ technique JPG 28 (2002) 2693
78 ATLAS and CMS Collaborations Procedure for the LHC Higgs boson search combination in summer 2011 ATL-PHYS-PUB-2011-011, CMS NOTE-2011/005
79 B. A. Dobrescu and F. Yu Coupling-mass mapping of dijet peak searches PRD 88 (2013) 035021 1306.2629
80 R. S. Chivukula, P. Ittisamai, K. Mohan, and E. H. Simmons Simplified limits on resonances at the LHC PRD 94 (2016) 094029 1607.05525
81 R. S. Chivukula, P. Ittisamai, K. Mohan, and E. H. Simmons Broadening the reach of simplified limits on resonances at the LHC PRD 96 (2017) 055043 1707.01080
Compact Muon Solenoid
LHC, CERN