2016

  1. P. Baronas, K. Kazlauskas, A. Gruodis, V. Jankauskas, A. Tomkevičienė, J. Simokaitienė, J.V. Gražulevičius, S. Juršėnas, “High-triplet-energy carbazole and fluorene tetrads”, Journal of Luminescence, Vol. 169, p. 256-265, 2016. (IF 2.693, Q1) 
  2. G. Kreiza, K. Kazlauskas, A. Bieliauskas, V. Getautis, A. Šačkus, and S. Juršėnas, “Fluorescence sensing based on phenylenediacetonitrile doped into polymer host”, Journal of Luminescence, Vol. 170, p. 293-298, 2016. (IF 2.693, Q1) 
  3. E. Gaubas, T. Čeponis, D. Meškauskaitė, R. Grigonis and V. Sirutkaitis, “Spectroscopy of defects in HPHT and CVD diamond by ESR and pulsed photo-ionization measurements”, Journal of Instrumentation, Vol. 11, p. C01017, 2016. (IF 1.310, Q2)  
  4. E. Gaubas, T. Čeponis, D. Meškauskaitė, and E. Simoen, “Comparative Study of Current Transients in HPHT and CVD Diamond Capacitor-Sensors”, ECS Journal of Solid State Science and Technology, Vol. 5, p. P3101-P3107 2016. (IF 1.650, Q2)
  5. T. Čeponis, E. Gaubas, J. Venius, A. Cicinas, F. Callens, J. Kusakovskij, H. Vrielinck, K. Mizohata, J. Raisanen, P. Tikkanen, “ESR spectroscopy of alanine impacted by high energy irradiations for wide range dosimetry”, Lithuanian Journal of Physics, Vol. 56, p. 49-54 2016. (IF 0.574, Q4)
  6. E. Gaubas, E. Simoen, and J. Vanhellemontc, “Review—Carrier Lifetime Spectroscopy for Defect Characterization in Semiconductor Materials and Devices”, ECS Journal of Solid State Science and Technology, Vol. 5, p. P3108-P3137 2016. (IF 1.650, Q2)
  7. E Gaubas, T Čeponis, J V Vaitkus, V Fadeyev, S Ely, Z Galloway, H F-W Sadrozinski, M Christophersen, B F Phlips, I Gorelov, M Hoeferkamp, J Metcalfe and S Seidel, “Study of surface recombination on cleaved and passivated edges of Si detectors”, Semiconductor Science and Technology, Vol. 31, p. 035003 (9pp), 2016. (IF 2.098, Q2)  
  8. M. Inoue, T. Serevičius, H. Nakanotani, K. Yoshida, T. Matsushima, S. Juršėnas, Ch. Adachi, “Effect of reverse intersystem crossing rate to suppress efficiency roll-off in organic light-emitting diodes with thermally activated delayed fluorescence emitters”, Chemical Physics Letters, Vol 644, p. 62-67, 2016. (IF 1.860, Q3)
  9. Ž Podlipskas, R Aleksiejūnas, A Kadys, J Mickevičius, J Jurkevičius, G Tamulaitis, M Shur, M Shatalov, J Yang and R Gaska, “Dependence of radiative and nonradiative recombination on carrier density and Al content in thick AlGaN epilayers”, Journal of Physics D: Applied Physics, Vol. 49, p. 145110, 2016. (IF 2.772, Q1)
  10. Ž Podlipskas, R Aleksiejūnas, S. Nargelas, J Jurkevičius, J Mickevičius, A Kadys, G Tamulaitis, M Shur, M Shatalov, J Yang and R Gaska, “Photomodification of carrier lifetime and diffusivity in AlGaN epitaxial layers”, Current Applied Physics, Vol. 16, p. 633-637, 2016. (IF 2.144, Q2)
  11. R. Rimkus, S. Tumkevičius, T. Serevičius, R. Komskis, P. Adomėnas, A. Gruodis, V. Jankauskas, K. Kazlauskas and S. Juršėnas, “Heterocyclic heptacene analogs - 8H-16,17-epoxydinaphto[2,3-c:2',3'- g]carbazoles as charge transport materials”, Dyes and Pigments, Vol. 124, p. 133-144, 2016. (IF 4.055, Q1)
  12. P. Onufrijevs, P. Ščajev, K. Jarašiūnas, A. Medvid, V. Korsaks, N. Mironova-Ulmane, M. Zubkins, and H. Mimura, “Photo-electrical and transport properties of hydrothermal ZnO”, Journal of Applied Physics, Vol. 119, p. 135705(1-7), 2016. (IF 2.101, Q2)
  13. D. Dementavicius (VU), V. Lukševičiūtė, V. M. Gómez-López, Ž Lukšienė, “Application of mathematical models for bacterial inactivation curves using Hypericin based photosensitization”, Journal of Applied Microbiology, Vol. 120, p. 1492-1500, 2016. (IF 2.156, Q2/Q3)
  14. I. Buchovec, V. Lukševičiūtė, A. Marsalka, I. Reklaitis and Ž. Lukšienė, “Effective photosensitization-based inactivation of Gram (−) food pathogens and molds using the chlorophyllin–chitosan complex: towards photoactive edible coatings to preserve strawberries”, Photochemical and Photobiological Sciences, Vol. 15, p. 506-516, 2016. (IF 2.235, Q3)
  15. V. Rumbauskas, D. Meškauskaitė, T. Čeponis, and E. Gaubas, „Anneal induced transforms of radiation defects in heavily electron irradiated Si diodes“, Journal of Instrumentation, Vol. 11 (9), p. P09004 (1-19), 2016. (IF 1.310, Q2)
  16. E. Gaubas, T. Čeponis, E. Kuokštis, D. Meškauskaitė, J. Pavlov, I. Reklaitis, “Study of Charge Carrier Transport in GaN Sensors”, Materials, Vol. 9, p. 293 (1-14), (2016). (IF 2.728, Q1)
  17. T. Grinys, R. Dargis, M. Frentrup, A. Kalpakovaitė-Jucevičienė, K Badokas, S. Stanionytė, A. Clark, and T. Malinauskas, “Facet analysis of truncated pyramid semi-polar GaN grown on Si(100) 2 with rare-earth oxide interlayer”, Journal of Applied Physics, accepted, 2016. (IF 2.101, Q2)
  18. I. Reklaitis, R. Kudžma, S. Miasojedovas, P. Vitta, A. Žukauskas, R. Tomašiūnas, I. Pietzonka, M. Strassburg „Photoluminescence decay dynamics in blue and green InGaN LED structures revealed by frequency domain technique“, Journal of Electronic Materials, Vol. 45, p. 3290-3299, 2016. (IF 1.491, Q3)
  19. S. Raišys, K. Kazlauskas, S. Juršėnas, and Y.C. Simon, “The Role of Triplet Exciton Diffusion in Light-Upconverting Polymer Glasses”, ACS Applied Materials & Interfaces, Vol. 8, p. 15732-15740, 2016. (IF 7.145, Q1)
  20. J.V. Vaitkus, A. Mekys, V. Rumbauskas, and J. Storasta, “Neutron irradiation influence on mobility and compensation of dark conductivity in silicon”, Lithuanian Journal of Physics, Vol. 56, p. 102–110, 2016. (IF 0.574, Q4)
  21. J. Jurkevičius, J. Mickevičius, A. Kadys, M. Kolenda, G. Tamulaitis, “Photoluminescence efficiency of BGaN epitaxial layers with high boron content”, Physica B, Vol. 492, p. 23-26, 2016. (IF 1.352, Q1)  
  22. D. Meškauskas, L. Dabašinskas, and A Žukauskas, “Effect of Aging on the Photoelectrical Properties of AlGaInP LEDs”, IEEE Transactions on Electron Devices, Vol. 63, p. 2815-2819, 2016. (IF 1.352, Q1/Q2)
  23. J. Kovger, A. Naujokaitis, G. Niaura, J. Juodkazytė, G. Valušis and A. Jagminas, “Research on Hydrothermal Decoration of TiO2 Nanotube Films with Nanoplatelet MoS2 Species”, Nanomaterials and Nanotechnology, Vol. 6, p. 37 (1-9), 2016. (IF 1.109, Q3/Q4)
  24. A. Jagminas, A. Naujokaitis, R. Žalnėravičius, V. Jasulaitienė, G. Valušis, “Tuning the activity of nanoplatelet MoS2-based catalyst for efficient hydrogen evolution via electrochemical decoration with Pt nanoparticles”, Applied Surface Science, Vol. 385, p. 56–62, 2016. (IF 3.150, Q1/ Q2)
  25. N. Rasiukevičiūtė, A. Valiuškaitė, N. Uselis, J. Viškelis, Ž. Lukšienė, “Attempts to use photosensitization for preservation of strawberry cultivar ‘Darselect’: effects on shelf-life, nutritional and organoleptic properties excluding Photosensitization for preservation of strawberry”,  Journal of Plant Diseases and Protection, Vol. 123, p. 125–131, 2016. (IF 0.477, Q3)  
  26. J. Mickevičius, J. Jurkevičius, A. Kadys, G. Tamulaitis, M. Shur, M. Shatalov, J. Yang, and R. Gaska, “Temperature-dependent efficiency droop in AlGaN epitaxial layers and quantum wells”, AIP Advances, Vol. 6, p. 045212 (1-5), 2016. (IF 1.444, Q3)
  27. V. V. Bozhko, A. V. Novosad, O. V. Parasyuk, N. Vainorius, V. Vertelis, A. Nekrošius, and V. Kažukauskas, “Enhanced persistent photoconduction in CuInS2–ZnIn2S4 alloys single crystals and processes of its relaxation”, Molecular Crystals and Liquid Crystals, Vol. 627, p. 153-162, 2016. (IF 0.532, Q4)
  28. V. Novickij, R. Stanevičienė, A. Grainys, J. Lukša, K. Badokas, T. Krivorotova, J. Sereikaitė, J. Novickij, E. Servienė, “Electroporation-assisted inactivation of Escherichia coli using nisin-loaded pectin nanoparticles”, Innovative Food Science and Emerging Technologies, Vol. 38, p. 98-104, 2016. (IF 2.997, Q1)
  29. M. Dmukauskas, A Kadys, T. Malinauskas, T. Grinys, I. Reklaitis, K. Badokas, M. Skapas, R. Tomašiūnas, D. Dobrovolskas, S. Stanionytė, I. Pietzonka, M. Strassburg, and H-J Lugauer, “Influence of metalorganic precursors flow interruption timing on green InGaN multiple quantum wells”, Journal of Physics D: Applied Physics, Vol. 49, p. 202101 (1-7), 2016. (IF 2.772, Q1)
  30. J. Juodkazytė, Gė Seniutinas, B. Šebeka, I. Savickaja, T. Malinauskas, K. Badokas, K. Juodkazis,  S. Juodkazis, “Solar water splitting: Efficiency discussion”, International Journal of Hydrogen Energy, Vol. 41, p. 11941-11948, 2016. (IF 3.205, Q2)
  31. E. Auffray, R. Augulis, A. Borisevich, V. Gulbinas, A. Fedorov, M. Korjik, M. T. Lucchini, V. Mechinsky, S. Nargelas, E. Songaila, G. Tamulaitis, A. Vaitkevičius, S. Zazubovich, “Luminescence rise time in self-activated PbWO4 and Ce-doped Gd3Al2Ga3O12 scintillation crystals”, Journal of Luminescence, Vol. 178, p. 54–60, 2016. (IF 2.693, Q1)  
  32. E. Auffray, M. Korjik, M.T. Lucchini, S. Nargelas, O. Sidletskiy, G. Tamulaitis, Y. Tratsiak, A. Vaitkevičius, “Free carrier absorption in self-activated PbWO4 and Ce-doped Y3(Al0.25Ga0.75)3O12 and Gd3Al2Ga3O12 garnet scintillators”, Optical Materials, Vol. 58, p. 461-465, 2016. (IF 2.183, Q2)  
  33. A. Baguckis, A. Novičkovas, A. Mekys, and V. Tamošiūnas, “Compact hybrid solar simulator with the spectral match beyond class A”, Journal of Photonics for Energy, Vol. 6, p. 035501, 2016. (IF 1.527, Q3)  
  34. K.S. Lee, S.W. Cho, S.Y. Choi, B. Hong, Y. Go, M.H. Kang, J.H. Lim, S.K. Park, A. Cimmino, S. Crucy, A. Fagot, M. Gul, A.A.O. Rios, M. Tytgat, N. Zaganidis, S. Aly, Y. Assran, A. Radi, A. Sayed, G. Singh, M. Abbrescia, G. Iaselli, M. Maggi, G. Pugliese, P. Verwilligen, W. van Doninck, S. Colafranceschi, A. Sharma, L. Benussi, S. Bianco, D. Piccolo, F. Primavera, V. Bhatnagar, R. Kumarl, A. Metha, J. Singh, A. Ahmad, M. Ahmad, W. Ahmed, M.I Asghar, I.M. Awan, Q. Hassan, H. Hoorani, W.A. Khan, T. Khurshid, S. Muhammad, M.A. Shah, H. Shahzad, M.S. Kim, M. Goutzvitz, G. Grenier, F. Lagarde, I.B. Laktineh, S. Carpinteyro Bernardino, C. Uribe Estrada, I. Pedraza, C.B. Severiano, S. Carrillo Moreno, F. Vazquez Valencia, L.M. Pant, S. Buontempo, N. Cavallo, M. Esposito, F. Fabozzi, G. Lanza, L. Lista, S. Meola, M. Merola, I. Orso, P. Paolucci, F. Thyssen, A. Braghieri, A. Magnani, P. Montagna, C. Riccardi, P. Salvini, I. Vai, P. Vitulo, Y. Ban, S.J. Qian, M. Choi, Y. Choi, J. Goh, D. Kim, A. Aleksandrov, R. Hadjiiska, P. Iaydjiev, M. Rodozov, S. Stoykova, G. Sultanov, M. Vutova, A. Dimitrov, L. Litov, B. Pavlov, P. Petkov, D. Lomidze, C. Avila, A. Cabrera, J.C. Sanabria, I. Crotty and J. Vaitkus, “Radiation tests of real-sized prototype RPCs for the Phase-2 Upgrade of the CMS Muon System”, Journal of Instrumentation, Vol. 11 (9), p. C08008 (1-10), 2016. (IF 1.310, Q2)  
  35. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for resonant t(t)over-bar production in proton-proton collisions at root s=8 TeV”, Physical Review D, Vol. 93, p. 012001, 2016. (IF 4.506, Q2)
  36.  A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for vectorlike charge 2/3 T quarks in proton-proton collisions at root(s)=8 TeV”, Physical Review D, Vol. 93, p. 012003, 2016. (IF 4.506, Q2)
  37. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of the charge asymmetry in top quark pair production in pp collisions at root s=8 TeV using a template method”, Physical Review D, Vol. 93, p. 034014, 2016. (IF 4.506, Q2)
  38. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for pair production of first and second generation leptoquarks in proton-proton collisions at root s=8 TeV”, Physical Review D, Vol. 93, p. 032004, 2016. (IF 4.506, Q2)  
  39. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for single production of scalar leptoquarks in proton-proton collisions at root s=8 TeV”, Physical Review D, Vol. 93, p. 032005, 2016. (IF 4.506, Q2) 
  40. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurements of t(t)over-bar spin correlations and top quark polarization using dilepton final states in pp collisions at root s=8 TeV”, Physical Review D, Vol. 93, p. 052007, 2016. (IF 4.506, Q2) 
  41.  A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of the top quark mass using proton-proton data at root(s)=7”, Physical Review D, Vol. 93, p. 072004, 2016. (IF 4.506, Q2) 
  42. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for dark matter and unparticles produced in association with a Z boson in proton-proton collisions at root s=8 TeV”, Physical Review D, Vol. 93, p. 052011, 2016. (IF 4.506, Q2)
  43.  A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of the top quark mass using charged particles in pp collisions at root s=8 TeV”, Physical Review D, Vol. 93, p. 092006, 2016. (IF 4.506, Q2)
  44.  A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for supersymmetry in pp collisions at root s=8 TeV in final states with boosted W bosons and b jets using razor variables”, Physical Review D, Vol. 93, p. 092009, 2016. (IF 4.506, Q2)  
  45. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “A search for pair roduction of new light bosons decaying into muons”, Physics Letters B, Vol. 752, p. 146-168, 2016. (IF 4.787, Q1) 
  46. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for neutral MSSM Higgs bosons decaying to mu(+) mu(-) in pp collisions at root s=7 and 8 TeV”, Physics Letters B, Vol. 752, p. 221-246, 2016. (IF 4.787, Q1)
  47. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for a Higgs boson decaying into gamma*gamma -> ll gamma with low dilepton mass in pp collisions at root s=8 TeV”, Physics Letters B, Vol. 753, p. 341-362, 2016. (IF 4.787, Q1)
  48. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for exotic decays of a Higgs boson into undetectable particles and one or more photons”, Physics Letters B,  Vol. 753, p. 363-388, 2016. (IF 4.787, Q1) 
  49. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Angular analysis of the decay B-0 -> K*(0)mu(+)mu(-) from pp collisions at root s=8 TeV”, Physics Letters B, Vol. 753, p. 424-448, 2016. (IF 4.787, Q1) 
  50. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Transverse momentum spectra of inclusive b jets in pPb collisions atv root s(NN)=5.02 TeV”, Physics Letters B, Vol. 754, p. 59-80, 2016. (IF 4.787, Q1)
  51. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Inclusive and differential measurements of the t(t)over-bar charge asymmetry in pp collisions at root s=8 TeV”, Physics Letters B, Vol, 757, p. 154-179, 2016. (IF 4.787, Q1)
  52.  A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of the CP-violating weak phase phi(s) and the decay width difference Delta Gamma(s) using the B-s(0) -> J/psi phi (1020) decay channel in pp collisions at root s=8 TeV”, Physics Letters B, Vol. 757, p. 97-120, 2016. (IF 4.787, Q1)
  53. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for supersymmetry in events with a photon, a lepton, and missing transverse momentum in pp collisions at root s=8 TeV”, Physics Letters B, Vol. 757, p. 6-31, 2016. (IF 4.787, Q1)
  54. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for supersymmetry in the multijet and missing transverse momentum final state in pp collisions at 13 TeV”, Physics Letters B, Vol. 758, p. 152-180, 2016. (IF 4.787, Q1)
  55. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for a low-mass pseudoscalar Higgs boson produced in association with a b(b)over-bar pair in pp collisions at root s=8 TeV”, Physics Letters B, Vol. 758, p. 296-320, 2016. (IF 4.787, Q1)
  56. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of spin correlations in tf production using the matrix element method in the muon plus jets final state in pp collisions at root S=8 TeV”, Physics Letters B, Vol. 758, p. 321-346, 2016. (IF 4.787, Q1)
  57. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of differential cross sections for Higgs boson production in the diphoton decay channel in pp collisions at root s=8TeV”, European Physical Journal C,  Vol. 76, p. 13, 2016. (IF 4.912, Q1)
  58. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of the t(t)over-bar production cross section in the all-jets final state in pp collisions at root s=8TeV”, European Physical Journal C, Vol. 76, p. 128, 2016. (IF 4.912, Q1)
  59. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Event generator tunes obtained from underlying event and multiparton scattering measurements”, European Physical Journal C, Vol. 76, p. 155, 2016. (IF 4.912, Q1) 
  60. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for massive WH resonances decaying into the l nu b(b)over-bar final state at root s=8 TeV”, European Physical Journal C, Vol. 76, p. 237, 2016. (IF 4.912, Q1)
  61. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for a very light NMSSM Higgs boson produced in decays of the 125 GeV scalar boson and decaying into tau leptons in pp collisions at root 8=TeV”, Journal of High Energy Physics, Iss. 1, p. 079, 2016. (IF 6.023, Q1)
  62. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Observation of top quark pairs produced in association with a vector boson in pp collisions at root s=8 TeV”, Journal of High Energy Physics, Iss. 1, p. 096, 2016. (IF 6.023, Q1)
  63. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for the production of an excited bottom quark decaying to tW in proton-proton collisions at root s=8 TeV”, Journal of High Energy Physics, Iss. 1, p. 166, 2016. (IF 6.023, Q1)
  64. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Correlations between jets and charged particles in PbPb and pp collisions at sqrt sNN = 2.76 TeV”, Journal of High Energy Physics, Iss. 2, p. 156, 2016. (IF 6.023, Q1)
  65. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for excited leptons in proton-proton collisions at root s=8 TeV”, Journal of High Energy Physics, Iss. 3, p. 125, 2016. (IF 6.023, Q1)
  66. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of differential and integrated fiducial cross sections for Higgs boson production in the four-lepton decay channel in pp collisions at root s=7 and 8 TeV”, Journal of High Energy Physics, Iss. 4, p. 005, 2016. (IF 6.023, Q1)
  67. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for anomalous single top quark production in association with a photon in pp collisions at root s=8 TeV”, Journal of High Energy Physics, Iss. 4, p. 035, 2016. (IF 6.023, Q1)
  68. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of transverse momentum relative to dijet systems in PbPb and pp collisions at root s(NN)=2.76 TeV”, Journal of High Energy Physics, Iss. 1, p. 006, 2016. (IF 6.023, Q1)
  69. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of top quark polarisation in t-channel single top quark production”, Journal of High Energy Physics, Iss. 4, p. 073, 2016. (IF 6.023, Q1)
  70. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for heavy Majorana neutrinos in e±e±+ jets and e± μ ±+ jets events in proton-proton collisions at s√=8 TeV”,  Journal of High Energy Physics, Iss, 4, p. 169, 2016. (IF 6.023, Q1)
  71. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Study of B Meson Production in p plus Pb Collisions at root s(NN)=5.02 TeV Using Exclusive Hadronic Decays”, Physical Review Letters, Vol. 116, p. 032301, 2016. (IF 7.645, Q1)
  72. A. Juodagalvis, J. Vaitkus, and CMS collaboration group,  “Measurement of the Top Quark Pair Production Cross Section in Proton-Proton Collisions at root s=13 TeV”, Physical Review Letters, Vol. 116, p. 052002, 2016. (IF 7.645, Q1)
  73. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for Narrow Resonances Decaying to Dijets in Proton-Proton Collisions at root s=13 TeV”, Physical Review Letters, Vol. 116, DOI: 10.1103/PhysRevLett.116.071801, 2016. (IF 7.645, Q1)
  74. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of Long-Range Near-Side Two-Particle Angular Correlations in pp Collisions at root s=13 TeV”, Physical Review Letters, Vol. 116, p. 172302, 2016. (IF 7.645, Q1)
  75. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Reconstruction and identification of tau lepton decays to hadrons and nu(tau) at CMS”, Journal of Instrumentation, Vol. 11, p. P01019, 2016. (IF 1.310, Q2)
  76. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Comparison of the Z/gamma* + jets to gamma + jets cross sections in pp collisions at root s = 8”, Journal of High Energy Physics, Iss. 4, p. 010, 2016. (IF 6.023, Q1)
  77. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for W ' decaying to tau lepton and neutrino in proton-proton collisions at root s=8 TeV”, Physics Letters B, Vol. 755, p. 196-216,  2016. (IF 4.787, Q1)
  78. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Searches for a heavy scalar boson H decaying to a pair of 125 GeV Higgs bosons hh or for a heavy pseudoscalar boson A decaying to Zh, in the final states with h -> tau tau”, Physics Letters B, Vol. 755, p. 217-244, 2016. (IF 4.787, Q1)
  79. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for pair-produced vectorlike B quarks in proton-proton collisions at root s=8 TeV”, Physical Review D,Vol. 93, p. 112009, 2016. (IF 4.506, Q2)
  80. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for the associated production of a Higgs boson with a single top quark in proton-proton collisions at root s=8 TeV”, Journal of High Energy Physics, Iss. 6, p. 177, 2016. (IF 6.023, Q1)
  81. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of inclusive jet production and nuclear modifications in pPb collisions at root s(NN)=5.02 TeV”, European Physical Journal C, Vol. 76, p. 372, 2016. (IF 4.912, Q1)
  82. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Measurement of t(t)over-bar production with additional jet activity, including b quark jets, in the dilepton decay channel using pp collisions at root s=8TeV”, European Physical Journal C, Vol. 76, p. 379, 2016. (IF 4.912, Q1)
  83. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for Narrow Resonances in Dijet Final States at root s=8 TeV with the Novel CMS Technique of Data Scouting”, Physical Review Letters, Vol. 117, p. 031802, 2016. (IF 7.645, Q1)
  84. A. Juodagalvis, J. Vaitkus, and CMS collaboration group, “Search for Resonant Production of High-Mass Photon Pairs in Proton-Proton Collisions at root s=8 and 13 TeV”, Physical Review Letters, Vol. 117, p. 051802, 2016. (IF 7.645, Q1)
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