On a common carrier hypothesis for the 6613.6 and 6196.0 Å diffuse interstellar bands
arXiv:1612.00052 · doi:10.1007/s10509-016-2878-x
Abstract
We explore via spectroscopic modeling whether the highly correlated diffuse interstellar bands at 6613.6 and 6196.0 Å might originate from a single molecule. Efforts were made to simulate the band contours of the DIBs along the three lines-of-sight, which have been observed by others at high resolution: HD179406, HD174165, and Her 36. Reasonable simultaneous fits were obtained using a prolate symmetric top molecule that exhibits transitions of two different band types, type-a parallel and type-b perpendicular bands. Two different excited states of a long- or heavy-chain, forked molecule are proposed. A minimum number of adjustable parameters were used including ground and excited state A and B rotational constants, an excited state centrifugal distortion constant, and three different rotational excitation temperatures. Points in favor and against the hypothesis are discussed.
References in corpus (5)
- The Diffuse Interstellar Bands: A Major Problem in Astronomical Spectroscopy
- Studies of the Diffuse Interstellar Bands. III. HD 183143
- DNA nanotechnology: understanding and optimisation through simulation
- Excitation temperature of C2 and broadening of the 6196A diffuse interstellar band
- Centrosymmetric molecules as possible carriers of diffuse interstellar bands