[3] Hoekstra A, Meertens P, Vos A. Refinement of the crystal structure of trans-stilbene(Tsb) the molecular structure in the crystal line and gaseous phases[J].Acta Crystal lographica,1975, 31(12):2813-2817.
[5] Arulchakkaravarthi A, Santhanaraghavan P, Ramasamy P. Crystal growth of trans-stilbene by vertical bridgman technique with modified growth vessels and its character isation[J].Journal of Crystal Growth,2001,224(1-2):89-94.
[6] Arulchakkaravarthi A, Santhanaraghavan P, Ramasamy P. Studies on microhardness and slip systems of bridgman grown trans-stilbene crystals[J].Materials Letters,2001,51(2):151-155.
[7] Carman L, Zaitseva N, Martinez H P, et al. The effect of material purity on the optical and scintillation properties of solution grown trans-stilbene crystals[J].Journal of Crystal Growth,2013,368:56-61.
[8] Zaitseva N, Glenn A, Carman L, et al. Scintillation properties of solution grown trans-stilbene single crystals[J].Nuclear Instruments and Methods in Physics Research,2015,789:8-15.
[9] Helmut Klapper, Natalia Zaitseva, Leslie Carman. X-ray to pographic study of growth defects of trans-stilbene crystals grown from golutions[J].Journal of Crystal Growth,2015,429:74-81.
[10] Carman M L, Glenn A M, Mabe A N. Solution growth of a ddeuterated trans-stilbene crystal for fast neutron detection[J].Journal of Crystal Growth,2018,498:51-55.
[11] Tony H Shin, PatrickL Feng, Joseph S, et al. Measured neutron light-output response for trans-stilbene and small molecule organic glass scintillators[J].Nuclear Instruments and Methods in Physics Research,2019,939:36-45.
[12] Sosa C S, Thompson S J, Chichester D L. Improved neutron gamma discrimination at low-light output events using conical trans-stilbene[J].Nuclear Instruments and Methods in Physics Research,2019,916:42-46.