The northern Arabian Sea is one of the few regions in the open ocean where thermocline water is severely depleted in oxygen. The intensity of this oxygen minimum zone (OMZ) has been reconstructed over the past 225,000 years using proxies for surface water productivity, water column denitrification, winter mixing, and the aragonite compensation depth (ACD). Changes in OMZ intensity occurred on orbital and suborbital timescales. Lowest O2 levels correlate with productivity maxima and shallow winter mixing. Precession-related productivity maxima lag early summer insolation maxima by ~6 kyr, which we attribute to a prolonged summer monsoon season related to higher insolation at the end of the summer. Periods with a weakened or even non-existent...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
A new deep-sea core from the base of the Arabian Sea Oxygen Minimum Zone (OMZ) spanning the last gla...
Two deep-sea sediment cores from the northeastern and the southeastern Arabian Sea were studied in o...
This study analyses monsoon proxy Globigerina bulloides from Ocean Drilling Program (ODP) Hole 723A ...
The Asian Monsoon system dominates the climate over large areas of the Asian and Indian continents a...
Denitrification in the Arabian Sea is closely related to the monsoon-induced upwelling and subsequen...
The Asian Monsoon system dominates the climate over large areas of the Asian and Indian continents a...
The Asian Monsoon system dominates the climate over large areas of the Asian and Indian continents a...
Fluctuations in the abundance of selected foraminiferal indicator species and diversity allowed the ...
Site 723 is located in a water depth of 808 m at the center of the oxygen minimum zone and the middl...
In order to reconstruct the monsoonal variability during the late Holocene we investigated a complet...
The Oxygen Minimum Zone (OMZ) is a potential source of CO2 to the atmosphere and the extensive OMZ s...
This paper focuses on the characteristics of the oxygen minimum zone (OMZ) as observed in the Arabia...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
A new deep-sea core from the base of the Arabian Sea Oxygen Minimum Zone (OMZ) spanning the last gla...
Two deep-sea sediment cores from the northeastern and the southeastern Arabian Sea were studied in o...
This study analyses monsoon proxy Globigerina bulloides from Ocean Drilling Program (ODP) Hole 723A ...
The Asian Monsoon system dominates the climate over large areas of the Asian and Indian continents a...
Denitrification in the Arabian Sea is closely related to the monsoon-induced upwelling and subsequen...
The Asian Monsoon system dominates the climate over large areas of the Asian and Indian continents a...
The Asian Monsoon system dominates the climate over large areas of the Asian and Indian continents a...
Fluctuations in the abundance of selected foraminiferal indicator species and diversity allowed the ...
Site 723 is located in a water depth of 808 m at the center of the oxygen minimum zone and the middl...
In order to reconstruct the monsoonal variability during the late Holocene we investigated a complet...
The Oxygen Minimum Zone (OMZ) is a potential source of CO2 to the atmosphere and the extensive OMZ s...
This paper focuses on the characteristics of the oxygen minimum zone (OMZ) as observed in the Arabia...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...
In response to rising CO2 concentrations and increasing global sea surface temperatures, oxygen mini...