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Berner, K S; Koç, Nalân; Godtliebsen, Fred; Divine, Dmitry V (2011): (Table 1) Age determination of sediment cores JM97-948/2A and MD95-2011 [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.830646, Supplement to: Berner, KS et al. (2011): Holocene climate variability of the Norwegian Atlantic Current during high and low solar insolation forcing. Paleoceanography, 26(2), PA2220, https://doi.org/10.1029/2010PA002002

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Abstract:
A high-resolution sediment core from the Vøring Plateau has been studied to document the centennial to millennial variability of the surface water conditions during the Holocene Climate Optimum (HCO) and the late Holocene period (LHP) in order to evaluate the effects of solar insolation on surface ocean climatology. Quantitative August summer sea surface temperatures (SSSTs) with a time resolution of 2-40 years are reconstructed by using three different diatom transfer function methods. Spectral- and scale-space methods are applied to the records to explore the variability present in the time series at different time scales. The SSST development in core MD95-2011 shows a delayed response to Northern Hemisphere maximum summer insolation at ~11,000 years B.P. The record shows the maximum SSST of the HCO to be from 7.3 to 8.9 kyr B.P., which implies that the site was located in the regional warm water pool removed from the oceanic fronts and Arctic waters. Superimposed on the general cooling trend are higher-frequency variabilities at time scales of 80-120, 210-320, 320-640, and 640-1280 years. The climate variations at the time scale of 320-640 years are documented both for periods of high and low solar orbital insolation. We found evidence that the submillennial-scale mode of variability (640-900 years) in SSST evident during the LHP is directly associated with varying solar forcing. At the shorter scale of 260-450 years, the SSST during the LHP displays a lagged response to solar forcing with a phase-locked behavior indicating the existence of a feedback mechanism in the climate system triggered by variations in the solar constant as well as the role of the thermal inertia of the ocean. The abruptness of the cooling events in the LHP, especially pronounced during the onsets of the Holocene Cold Period I (approximately 2300 years B.P.) and the Little Ice Age (approximately 550 years B.P.), can be explained by a shutdown of deep convection in the Nordic Seas in response to negative solar insolation anomalies. These cooling events are on the order of 1.5°C.
Coverage:
Median Latitude: 66.969745 * Median Longitude: 7.639330 * South-bound Latitude: 66.969660 * West-bound Longitude: 7.639330 * North-bound Latitude: 66.969830 * East-bound Longitude: 7.639330
Date/Time Start: 1995-06-08T00:00:00 * Date/Time End: 1995-06-08T00:00:00
Minimum DEPTH, sediment/rock: 0.0000 m * Maximum DEPTH, sediment/rock: 7.5050 m
Event(s):
JM97-948/2A  * Latitude: 66.969830 * Longitude: 7.639330 * Elevation: -1048.0 m * Method/Device: Giant box corer (GKG) * Comment: Taken with R/V "Jan Mayen"
MD95-2011 (MD952011)  * Latitude: 66.969660 * Longitude: 7.639330 * Date/Time: 1995-06-08T00:00:00 * Elevation: -1048.0 m * Recovery: 17 m * Location: Voring Plateau * Campaign: MD101 (IMAGES I) * Basis: Marion Dufresne (1995) * Method/Device: Calypso Corer (CALYPSO) * Comment: XII Sections, Site location wrong, slumps. Bent core; liner imploded in the middle of the core; 30 cm of sediment of the top recovered in a 1/2 liner
Comment:
The measurements are made on the foraminifer species N. pachyderma (dex) and N. pachyderma (sin). The age of the Vedde ash layer is the GRIP age from Grönvold et al. (1995, doi:10.1016/0012-821X(95)00145-3). The dates were calibrated with the MARINE04 calibration curve, with Delta R of 0 ± 20 in the Holocene, and Delta R of 300 ± 20 in the pre-Holocene. The age-depth model uses a mixed-effect regression procedure, which uses the midpoint of the 1s ranges rather than the intercept as a point estimate of the 14C dates, described by Heegaard et al. (2005, doi:10.1191/0959683605hl836rr).
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEvent
DEPTH, sediment/rockDepth sedmGeocode
Laboratory code/labelLab labelBerner, K SKIA = Kiel, GifA = Gif sur Yvette, TUa = Trondheim, Poz = Potsdam
Age, datedAge datedkaBerner, K SAge, 14C AMS
Age, dated standard deviationAge dated std dev±Berner, K SAge, 14C AMS
Calendar ageCal ageka BPBerner, K SAge, 14C calibrated
Size:
129 data points

Data

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Event

Depth sed [m]

Lab label

Age dated [ka]

Age dated std dev [±]

Cal age [ka BP]
JM97-948/2A 0.0000top0.000-0.04600
JM97-948/2A0.2175KIA 62850.7350.0400.36950
JM97-948/2A0.3075KIA 48000.9400.0400.53740
MD95-2011 0.0500Poz-82451.0200.1000.54470
MD95-20110.1050GifA964710.9800.0600.56690
MD95-20110.2450KIA56001.5900.0400.63720
MD95-20110.3050KIA39251.0400.0400.67280
MD95-20110.4750KIA56011.1600.0300.79700
MD95-20110.5550Poz-82441.5300.0900.86800
MD95-20110.7050KIA39261.5600.0501.01890
MD95-20110.8950KIA62861.5900.0301.23940
MD95-20111.0150Poz-82461.7900.0601.39190
MD95-20111.2050Poz-101582.2100.0601.63840
MD95-20111.3050KIA39272.3500.0401.76170
MD95-20111.5400KIA62872.3350.0252.03460
MD95-20111.7050GifA964722.6200.0602.21350
MD95-20112.2500Poz-82423.0000.0502.90520
MD95-20112.5000Poz-82413.3800.0703.30270
MD95-20112.6950KIA100113.8200.0353.64640
MD95-20113.0000Poz-82404.0800.0704.17080
MD95-20113.2050KIA4634.3300.0504.52950
MD95-20113.6150Poz-101594.9900.0405.27390
MD95-20114.5100Poz-82386.4200.1606.79135
MD95-20114.9050Poz-101606.9200.0507.48300
MD95-20115.2050KIA4647.2600.0608.09830
MD95-20115.2850Poz-82377.6900.1108.16170
MD95-20115.3350Poz-82368.5300.1608.27705
MD95-20115.4150Poz-82358.2800.1408.33445
MD95-20115.7050Poz-82348.7000.0909.19820
MD95-20117.0350TUa-331510.7750.08511.98423
MD95-20117.3050Tua-331611.8750.14012.73490
MD95-20117.5050KIA46512.2200.09013.27910
MD95-20117.0350vedde ash11.98100