Pelagic marine carbonates provide important records of past environmental change. We carried out detailed low-temperature magnetic measurements on biogenic magnetite-bearing sediments from the Southern Ocean (Ocean Drilling Program (ODP) Holes 738B, 738C, 689D, and 690C) and on samples containing whole magnetotactic bacteria cells. We document a range of low-temperature magnetic properties, including reversible humped low-temperature cycling (LTC) curves. Different degrees of magnetite oxidation are considered to be responsible for the observed variable shapes of LTC curves. A dipole spring mechanism in magnetosome chains is introduced to explain reversible LTC curves. This dipole spring mechanism is proposed to result from the uniaxial ani...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000-6000. m, at ra...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of past environmental change. We carried out det...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic marine carbonates provide important records of pastenvironmental change. We carried out deta...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000-6000. m, at ra...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Pelagic carbonates are deposited far from continents, usually at water depths of 3000–6000 m, at rat...
Magnetotactic bacteria intracellularly biomineralize magnetite of an ideal grain size for recording ...