We theoretically investigate the possibility to use single-object spectroscopy to probe size variations of the bacteriochlorophyll aggregates inside chlorosomes. Chlorosomes are the light-harvesting organelles of green sulfur and non-sulfur bacteria. They are known to be the most efficient light-harvesting systems in nature. Key to this efficiency is the organization of bacteriochlorophyll molecules in large self-assembled aggregates that define the secondary structure inside the chlorosomes. Many studies have been reported to elucidate the morphology of these aggregates and the molecular packing inside them. It is widely believed that tubular aggregates play an important role. Because the size (radius and length) of these aggregates affect...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
We theoretically investigate the possibility to use single-object spectroscopy to probe size variati...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Among all photosynthetic organisms, green bacteria have evolved one of the most efficient light-harv...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Green sulfur bacteria can grow photosynthetically by absorbing only a few photons per bacteriochloro...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...
Linear dichroism (LD) spectroscopy is a widely used technique for studying the mutual orientation of...