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1968 to Present
Abstract contains all words: AIR TEMPERATURE NORTH PACIFIC

Cont. #: 1155
Aagaard, K., C.H. Pease, A.T. Roach, and S.A. Salo (1989): Beaufort Sea mesoscale circulation study—Final Report. NOAA Tech. Memo. ERL PMEL-90, NTIS: PB90–158775, 114 pp. [PDF Version]
Cont. #: 900
Bates, T.S., J.D. Cline, R.H. Gammon, and S.R. Kelly-Hansen (1987): Regional and seasonal variations in the flux of oceanic dimethylsulfide to the atmosphere. J. Geophys. Res., 92(C3), 2930–2938, doi: 10.1029/JC092iC03p02930.
Cont. #: 3028
Bond, N.A., and M.F. Cronin (2008): Regional weather patterns during anomalous air-sea fluxes at the Kuroshio Extension Observatory (KEO). J. Climate, 21(8), 1680–1697, doi: 10.1175/2007JCLI1797.1.
Cont. #: 2097
Bond, N.A., and D.E. Harrison (2000): The Pacific Decadal Oscillation, air-sea interaction and central north Pacific winter atmospheric regimes. Geophys. Res. Lett., 27(5), 731–734, doi: 10.1029/1999GL010847.
Cont. #: 2565
Bond, N.A., and D.E. Harrison (2006): ENSO's effect on Alaska during opposite phases of the Arctic Oscillation. Int. J. Climatol., 26(13), 1821–1841, doi: 10.1002/joc.1339.
Cont. #: 1947
Boutin, J., J. Etcheto, Y. Dandonneau, D.C.E. Bakker, R.A. Feely, H.Y. Inoue, M. Ishii, R.D. Ling, P.D. Nightingale, N. Metzl, and R. Wanninkhof (1999): Satellite sea surface temperature: A powerful tool for interpreting in situ pCO2 measurements in the equatorial Pacific Ocean. Tellus, 51B(2), 490–508, doi: 10.1034/j.1600-0889.1999.00025.x.
Cont. #: 5170
Cai, Q., J. Wang, D. Beletsky, J.E. Overland, M. Ikeda, and L. Wan (2021): Accelerated decline of summer Arctic sea ice during 1850–2017 and the amplified Arctic warming during the recent decades. Environ. Res. Lett., 16, 034015, doi: 10.1088/1748-9326/abdb5f, View online (open access).
Cont. #: 668
Coomes, C.A., C.C. Ebbesmeyer, J.M. Cox, J.M. Helseth, L.R. Hinchey, G.A. Cannon, and C.A. Barnes (1984): Synthesis of current measurements in Puget Sound, Washington—Volume 2: Indices of mass and energy inputs into Puget Sound: Runoff, air temperature, wind, and sea level. NOAA Tech. Memo. NOS OMS-4, 45 pp. & 2 microfiche.
Cont. #: 667
Cox, J.M., C.C. Ebbesmeyer, C.A. Coomes, J.M. Helseth, L.R. Hinchey, G.A. Cannon, and C.A. Barnes (1984): Synthesis of current measurements in Puget Sound, Washington—Volume 1: Index to current measurements in Puget Sound from 1908–1980, with daily and record averages for selected measurements. NOAA Tech. Memo. NOS OMS-3, 38 pp. & 4 microfiche.
Cont. #: 3473
Cronin, M.F., N. Bond, J. Booth, H. Ichikawa, T.M. Joyce, K. Kelly, M. Kubota, B. Qiu, C. Reason, M. Rouault, C. Sabine, T. Saino, J. Small, T. Suga, L.D. Talley, L. Thompson, and R.A. Weller (2010): Monitoring ocean-atmosphere interactions in western boundary current extensions. doi: 10.5270/OceanObs09.cwp.20, In Proceedings of the "OceanObs'09: Sustained Ocean Observations and Information for Society" Conference (Vol. 2), Venice, Italy, 21–25 September 2009, Hall, J., D.E. Harrison, and D. Stammer, Eds., ESA Publication WPP-306.
Cont. #: 5264
Cynar, H., L.W. Juranek, C.W. Mordy, D. Strausz, and S. Bell (2022): High-resolution biological net community production in the Pacific-influenced Arctic as constrained by O2/Ar and O2/N2 observations. Deep-Sea Res. II, 206, 105214, doi: 10.1016/j.dsr2.2022.105214.
Cont. #: 4997
Danielson, S.L., O. Ahkinga, C. Ashjian, E. Basyuk, L.W. Cooper, L. Eisner, E. Farley, K.B. Iken, J.M. Grebmeier, L. Juranek, G. Khen, S. Jayne, T. Kikuchi, C. Ladd, K. Lu, R.M. McCabe, G.W.K. Moore, S. Nishino, F. Ozenna, R.S. Pickart, I. Polyakov, P.J. Stabeno, R. Thoman, W.J. Williams, K. Wood, and T.J. Weingartner (2020): Manifestation and consequences of warming and altered heat fluxes over the Bering and Chukchi Sea continental shelves. Deep-Sea Res. II, 177, 104781, doi: 10.1016/j.dsr2.2020.104781, View online.
Cont. #: 2680
de Szoeke, S.P., C.S. Bretherton, N.A. Bond, M.F. Cronin, and B.M. Morley (2005): EPIC 95°W observations of the eastern Pacific atmospheric boundary layer from the cold tongue to the ITCZ. J. Atmos. Sci., 62(2), 426–442, doi: 10.1175/JAS-3381.1.
Cont. #: 666
Ebbesmeyer, C.C., C.A. Coomes, J.M. Cox, J.M. Helseth, L.R. Hinchey, G.A. Cannon, and C.A. Barnes (1984): Synthesis of current measurements in Puget Sound, Washington—Volume 3: Circulation in Puget Sound: An interpretation based on historical records of currents. NOAA Tech. Memo. NOS OMS-5, 73 pp. & 1 microfiche.
Cont. #: 2860
Grebmeier, J.M., J.E. Overland, S.E. Moore, E.V. Farley, E.C. Carmack, L.W. Cooper, K.E. Frey, J.H. Helle, F.A. McLaughlin, and S.L. McNutt (2006): A major ecosystem shift in the Northern Bering Sea. Science, 311(5766), 1461–1464, doi: 10.1126/science.1121365.
Cont. #: 3832
Hales, B., P.G. Strutton, M. Saraceno, R. Letelier, T. Takahashi, R. Feely, C. Sabine, and F. Chavez (2012): Satellite-based prediction of pCO2 in coastal waters of the eastern North Pacific. Prog. Oceanogr., 103, 1–15, doi: 10.1016/j.pocean.2012.03.001.
Cont. #: 2753
Hare, J., C. Fairall, T. Uttal, D. Hazen, M.F. Cronin, N. Bond, and D. Veron (2005): Cloud, radiation, and surface forcing in the equatorial eastern Pacific. NOAA Tech Memo OAR-PSD 307, NOAA ESRL, Boulder, CO, 64 pp. [PDF Version]
Cont. #: 941
Hayes, S.P., M.J. McPhaden, and A. Leetmaa (1989): Observational verification of a quasi real time simulation of the tropical Pacific Ocean. J. Geophys. Res., 94(C2), 2147–2157, doi: 10.1029/JC094iC02p02147.
Cont. #: 1051
Hayes, S.P., M.J. McPhaden, and J.M. Wallace (1989): The influence of sea-surface temperature on surface wind in the eastern equatorial Pacific: Weekly to monthly variability. J. Climate, 2(12), 1500–1506, doi: 10.1175/1520-0442(1989)002<1500:TIOSST>2.
Cont. #: 4284
Hermann, A.J., C. Ladd, W. Cheng, E.N. Curchitser, and K. Hedstrom (2016): A model-based examination of multivariate physical modes in the Gulf of Alaska. Deep-Sea Res. II, 132, 68–89, doi: 10.1016/j.dsr2.2016.04.005, Understanding Ecosystem Processes in the Gulf of Alaska: Volume 1.
Cont. #: 4977
Johnson, Z.F., Y. Chikamoto, S.-Y. Wang, M.J. McPhaden, and T. Mochizuki (2020): Pacific Decadal Oscillation remotely forced by the equatorial Pacific and the Atlantic oceans. Climate Dynam., 55(3-4), 789–811, doi: 10.1007/s00382-020-05295-2, View online.
Cont. #: 1566
Kessler, W.S., and M.J. McPhaden (1995): The 1991–1993 El Niño in the central Pacific. Deep-Sea Res. Pt. II, 42(2–3), 295–333, doi: 10.1016/0967-0645(95)00041-N.
Cont. #: 4879
Khapalova, E.A., V.K. Jandhyala, S.B. Fotopoulos, and J.E. Overland (2018): Assessing change-points in surface air temperature over Alaska. Front. Environ. Sci., 6, 121, doi: 10.3389/fenvs.2018.00121, View online.
Cont. #: 1992
Langland, R.H., Z. Toth, R. Gelaro, I. Szunyogh, M.A. Shapiro, S.J. Majumdar, R.E. Morss, G.D. Rohaly, C. Velden, N. Bond, and C.H. Bishop (1999): The North Pacific Experiment (NORPEX-98): Targeted observations for improved North American weather forecasts. Bull. Am. Meteorol. Soc., 80(7), 1363–1384, doi: 10.1175/1520-0477(1999)080<1363:TNPENT>2.0.CO;2.
Cont. #: 2841
Levinson (ed.), D.H., P. Ambenje, O. Baddour, G.I. Belchansky, G.D. Bell, M. Chelliah, M.S. Halpert, K. Mo, W.M. Thiaw, M.A. Bell, S.J. Camargo, E.K. Grover-Kopec, E. Blake, R. Pasch, J.E. Box, O.N. Bulygina, N.N. Korshunova, V. Razuvaev, J.C. Christy, E.R. Cook, M.C. Váquez, B.C. Douglas, D.C. Douglas, S.D. Drobot, C.M. Eakin, C. Woodhouse, R.A. Feely, M.J. McPhaden, M.A. Fortune, B. Garanganga, K.L. Gleason, J.H. Lawrence, D.H. Levinson, M.J. Menne, R.W. Reynolds, S.E. Stephens, A.M. Waple, S. Goldenberg, C. Landsea, J. Kennedy, C. Kocot, D. Phillips, R. Whitewood, K.R. Kumar, W. Landman, N. Maximenko, L. Miller, P. Niiler, L. Talley, A.K. Njogu, F. Rahimzadeh, M. Rajeevan, J. Richter-Menge, E. Rignot, I.G. Rigor, D.A. Robinson, M. Rusticucci, M.J. Salinger, R.C. Schnell, R.S. Stone, D. Stanitski, A. Taghipour, R. Wanninkhof, A.B. Watkins, B. Trewin, P. Zhai, and X. Zou (2005): State of the climate in 2004. Bull. Am. Meteorol. Soc., 86(6), S1–S86, doi: 10.1175/BAMS-86-6-Levinson.
Cont. #: 3957
Lockwood, D., P.D. Quay, M.T. Kavanaugh, L.W. Juranek, and R.A. Feely (2012): High-resolution estimates of net community production and air-sea CO2 flux in the northeast Pacific. Global Biogeochem. Cycles, 26, GB4010, doi: 10.1029/2012GB004380.
Cont. #: 4765
Luo, D., X. Chen, J. Overland, I. Simmonds, Y. Wu, and P. Zhang (2019): Weakened potential vorticity barrier linked to Arctic sea-ice loss and increased mid-latitude cold extremes. J. Climate, 32(14), 4235–4261, doi: 10.1175/JCLI-D-18-0449.1, View online.
Cont. #: 3080
McPhaden, M.J., M.F. Cronin, and D.C. McClurg (2008): Meridional structure of the seasonally varying mixed layer temperature balance in the eastern tropical Pacific. J. Climate, 21(13), 3240–3260, doi: 10.1175/2007JCLI2115.1.
Cont. #: 5316
Mogen, S.C., N.S. Lovenduski, A.R. Dallmann, L. Gregor, A.J. Sutton, S.J. Bograd, N. Cordero Quiros, E. Di Lorenzo, E.L. Hazen, M.G. Jacox, M. Pozo Buil, and S. Yeager (2022): Ocean biogeochemical signatures of the North Pacific Blob. Geophys. Res. Lett., 49(9), e2021GL096938, doi: 10.1029/2021GL096938, View online.
Cont. #: 1694
Murphy, P.P., D.E. Harrison, R.A. Feely, T. Takahashi, R.F. Weiss, and R.H. Gammon (1998): Variability of ΔpCO2 in the subarctic north Pacific. A comparison of results from four expeditions. Tellus, 50B(2), 185–204, doi: 10.1034/j.1600-0889.1998.t01-1-00006.x.
Cont. #: 5386
Nagano, A., B. Geng, K.J. Richards, M.F. Cronin, K. Taniguchi, M. Katsumata, and I. Ueki (2022): Coupled atmosphere–ocean variations on timescales of days observed in the western tropical Pacific warm pool during mid-March 2020. J. Geophys. Res., 127, e2022JC019032, doi: 10.1029/2022JC019032, View open access article online at AGU (external link).
Cont. #: 5306
Overland, J.E. (2021): Causes of the record-breaking Pacific Northwest heatwave, late June 2021. Atmosphere, 12(11), 1434, doi: 10.3390/atmos12111434, View online (open access).
Cont. #: 2068
Overland, J.E., J.M. Adams, and H.O. Mofjeld (2000): Chaos in the North Pacific: Spatial modes and temporal irregularity. Prog. Oceanogr., 47, 337–354, doi: 10.1016/S0079-6611(00)00041-0.
Cont. #: 4037
Overland, J.E., J. Francis, R. Hall, E. Hanna, S.-J. Kim, and T. Vihma (2015): The melting Arctic and mid-latitude weather patterns: Are they connected? J. Climate, 28(20), 7917–7932, doi: 10.1175/JCLI-D-14-00822.1.
Cont. #: 3679
Overland, J.E., J. Wang, R.S. Pickart, and M. Wang (2014): Recent and future changes in the meteorology of the Pacific Arctic. In The Pacific Arctic Region: Ecosystem Status and Trends in a Rapidly Changing Environment, J.M. Grebmeier and W. Maslowski (eds.), Springer Science+Business Media, Dordrecht, 17–30, doi: 10.1007/978-94-017-8863-2_2.
Cont. #: 4485
Overland, J.E., M. Wang, and T.J. Ballinger (2018): Recent increased warming of the Alaskan marine Arctic due to midlatitude linkages. Adv. Atmos. Sci., 35(1), 75–84, doi: 10.1007/s00376-017-7026-1.
Cont. #: 3113
Overland, J.E., M. Wang, and S. Salo (2008): The recent Arctic warm period. Tellus, 60A, 589–597, doi: 10.1111/j.1600-0870.2008.00327.x.
Cont. #: 3683
Overland, J.E., M. Wang, K.R. Wood, D.B. Percival, and N.A. Bond (2012): Recent Bering Sea warm and cold events in a 95-year context. Deep-Sea Res. II, 65–70, 6–13, doi: 10.1016/j.dsr2.2012.02.013.
Cont. #: 3488
Park, G.-H., R. Wanninkhof, S.C. Doney, T. Takahashi, K. Lee, R.A. Feely, C. Sabine, J. Triñanes, and I. Lima (2010): Variability of global net sea-air CO2 fluxes over the last three decades using empirical relationships. Tellus, 62B(5), 352–368, doi: 10.1111/j.1600-0889.2010.00498.x.
Cont. #: 4642
Pelland, N.A., C.C. Eriksen, S.R. Emerson, and M.F. Cronin (2018): Seaglider surveys at Ocean Station Papa: Oxygen kinematics and upper-ocean metabolism. J. Geophys. Res., 123(9), 6408–6427, doi: 10.1029/2018JC014091, View online.
Cont. #: 2249
Percival, D.B., J.E. Overland, and H.O. Mofjeld (2001): Interpretation of North Pacific variability as a short- and long-memory process. J. Climate, 14(24), 4545–4559, doi: 10.1175/1520-0442(2001)014<4545:IONPVA>2.
Cont. #: 3133
Pickart, R.S., G.W.K. Moore, A.M. Macdonald, I.A. Renfrew, J.E. Walsh, and W.S. Kessler (2009): Seasonal evolution of Aleutian low-pressure systems: Implications for North Pacific sub-polar circulation. J. Phys. Oceanogr., 39, 1317–1339, doi: 10.1175/2008JPO3891.1.
Cont. #: 5263
Pittman, N.A., P.G. Strutton, R. Johnson, R.J. Matear, and A.J. Sutton (2022): Relationships between air-sea CO2 flux and new production in the equatorial Pacific. Global Biogeochem. Cycles, 36(4), e2021GB007121, doi: 10.1029/2021GB007121, View online (open access).
Cont. #: 2802
Pyatt, H.E., B.A. Albrecht, C. Fairall, J.E. Hare, N. Bond, P. Minnis, and J.K. Ayers (2005): Evolution of marine atmospheric boundary layer structure across the cold tongue-ITCZ complex. J. Climate, 18(5), 737–753, doi: 10.1175/JCLI-3287.1.
Cont. #: 590
Reynolds, R.M. (1982): Comparison of surface meteorological observations from ship and toroid buoy in the North Pacific during STREX. J. Appl. Meteorol., 21(7), 1032–1037, doi: 10.1175/1520-0450(1982)021<1032:COSMOF>2.
Cont. #: 2862
Rodionov, S.N., N.A. Bond, and J.E. Overland (2007): The Aleutian low, storm tracks, and winter climate variability in the Bering Sea. Deep-Sea Res. II, 54(23–26), 2560–2577, doi: 10.1016/j.dsr2.2007.08.002.
Cont. #: 2685
Rodionov, S.N., J.E. Overland, and N.A. Bond (2005): The Aleutian low and winter climatic conditions of the Bering Sea. Part I: Classification. J. Climate, 18(1), 160–177, doi: 10.1175/JCLI3253.1.
Cont. #: 2901
Sabine, C.L., and N. Gruber (2006): Introduction to special section: North Pacific Carbon Cycle Variability and Climate Change. J. Geophys. Res., 111(C7), C07S01, doi: 10.1029/2006JC003532.
Cont. #: 2159
Schumacher, J.D. (2000): Regime shift theory: Review of changing environmental conditions in the Bering Sea and Eastern North Pacific. In Proceedings of the Fifth North Pacific Rim Fisheries Conference, Anchorage, AK, 1–3 December 1999, 127–142.
Cont. #: 2440
Sloyan, B.M., G.C. Johnson, and W.S. Kessler (2003): The Pacific Cold Tongue: A pathway for interhemispheric exchange. J. Phys. Oceanogr., 33(5), 1027–1043, doi: 10.1175/1520-0485(2003)033<1027:TPCTAP>2.0.CO;2.
Cont. #: 2281
Takahashi, T., S.C. Sutherland, C. Sweeney, A. Poisson, N. Metzl, B. Tilbrook, N. Bates, R. Wanninkhof, R.A. Feely, C. Sabine, J. Olafsson, and Y. Nojiri (2002): Global sea-air CO2 flux based on climatological surface ocean pCO2, and seasonal biological and temperature effects. Deep-Sea Res. Pt. II, 49(9–10), 1601–1622, doi: 10.1016/S0967-0645(02)00003-6.
Cont. #: 3054
Takahashi, T., S.C. Sutherland, R. Wanninkhof, C. Sweeney, R.A. Feely, D.W. Chipman, B. Hales, G. Friederich, F. Chavez, C. Sabine, A. Watson, D.C.E. Bakker, U. Schuster, N. Metzl, H. Yoshikawa-Inoue, M. Ishii, T. Midorikawa, Y. Nojiri, A. Körtzinger, T. Steinhoff, M. Hopemma, J. Olafsson, T.S. Arnarson, B. Tilbrook, T. Johannessen, A. Olsen, R. Bellerby, C.S. Wong, B. Delille, N.R. Bates, and H.J.W. de Baar (2009): Climatological mean and decadal change in surface ocean pCO2, and net sea-air CO2 flux over the global oceans. Deep-Sea Res. II, 56(8–10), 554–577, doi: 10.1016/j.dsr2.2008.12.009.
Cont. #: 2375
Thum, N., S.K. Esbensen, D.B. Chelton, and M.J. McPhaden (2002): Air-sea heat exchange along the Northern Sea surface temperature front in the eastern tropical Pacific. J. Climate, 15(23), 3361–3378, doi: 10.1175/1520-0442(2002)015<3361:ASHEAT>2.
Cont. #: 2793
Wang, M., J.E. Overland, D.B. Percival, and H.O. Mofjeld (2006): Change in the Arctic influence on Bering Sea climate during the twentieth century. Int. J. Climatol., 26(4), 531–539, doi: 10.1002/joc.1278.
Cont. #: 5425
Wills, S., M.F. Cronin, and D. Zhang (2023): Air-sea heat fluxes associated with convective cold pools. J. Geophys. Res., 128(20), e2023JD039708, doi: 10.1029/2023JD039708, View open access article at AGU/Wiley (external link).
Cont. #: 5221
Wills, S.M., M.F. Cronin, and D. Zhang (2021): Cold pools observed by uncrewed surface vehicles in the Central and Eastern Tropical Pacific. Geophys. Res. Lett., 48(10), e2021GL093373, doi: 10.1029/2021GL093373, View online (open access).
Cont. #: 729
Wilson, J.G., A.L. Comiskey, R.W. Lindsay, and V.L. Long (1984): Regional meteorology of the Bering Sea during MIZEX-West: February and March 1983. ERL Special Report, NTIS: PB85-173599, 115 pp. [PDF Version]
Cont. #: 656
Wisegarver, D.P., and J.D. Cline (1985): Solubility of trichlorofluoromethane (F-11) and dichlorodifluoromethane (F-12) in seawater and its relationship to surface concentrations in the North Pacific. Deep-Sea Res., 32(1), 97–106, doi: 10.1016/0198-0149(85)90019-6.
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