Spectra energy in cryocondensate emission nitrogen oxide and ethanol

Authors

  • Е. Коршиков Al Farabi Kazakh National University, Kazakhstan, Almaty
  • А. Дробышев Al Farabi Kazakh National University, Kazakhstan, Almaty
  • А. Алдияров Al Farabi Kazakh National University, Kazakhstan, Almaty
  • В. Курносов Al Farabi Kazakh National University, Kazakhstan, Almaty
  • Ю. Стржемечный Texas Tech University, Texas, USA
  • А. Нaумов Texas Tech University, Texas, USA
  • Дж. Кимбaлл Texas Tech University, Texas, USA
  • X. Доaн Texas Tech University, Texas, USA
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Keywords:

Vacuum, nitrous oxide, ethanol, cryocondensate emission, cryocondensate, Kelvin, substrate

Abstract

This paper presents the experimental results obtained in the continuation of the study phenomenon cryocondensate emission. Based on the Texas Christian University held and received power characteristics cryocondensate emission arising during the condensation of nitrous oxide and ethanol. Main measurement parameters are as follows: condensation temperature T = 10 K at an initial vacuum chamber P = 10-6 Torr. As test substances, we used nitrous oxide (purity: 99.99%) and ethanol (purity: 99.99%).

References

1 Kutzner K. Spontaneous polarization of condensing carbon monoxide and other gases with an electrical dipole moment// Thin Solid Films. – 1972. – Vol. 14. – P. 49-61.

2 Balog R., Cicman P., Jones N.C., Field D. Spontaneous Dipole Alignment in Films of N2O // Phys. Rev. Lett. – 2009. – Vol. 102. – P. 073003.

3 Field D., Plekan O., Cassidy A. et al. Spontaneous electricfieldsin solid films: spontelectrics // Intern. Rev. Phys. Chem. – 2013. – Vol. 32. – P. 345-392.

4 Cassidy A., Plekan O., Balog R. et al. Spontaneous electric fields in films of CF3Cl, CF2Cl2and CFCl3 // Phys. Chem. Chem. Phys. – 2013. – Vol. 15. – P. 108-113.

5 Cassidy A., Plekan O., Balog R. et al. Electric Field Structures in Thin Films: Formation and Properties // J. Phys. Chem. A. – 2014.– Vol. 118(33). – P. 6615-6621.

6 Cassidy A., Plekan O., DungerJ. et al. Investigations into the nature of spontelectrics: nitrous oxide diluted in xenon // Phys. Chem. Chem. Phys. – 2014. – Vol. 16(43). – P. 23843-23853.

7 Ceballos G., Wende H., Baberschke K., Arvanitis D. Molecular geometry modifications upon adsorption for N2O: N and O K-edge NEXAFS// Surface Science. – 2001. – Vol. 482-485. – P. 15-20.

8 Franke K.J., Fernandez-Torrente I., Pascual J.I., Lorente N. Adsorption of N2O on Cu(100): a combined scanning tunnel-ing microscopy and density functional theory study // Phys. Chem. Chem. Phys. – 2008. – Vol.10. – P. 1640-1647.

9 Trogler W.C. Physical properties and mechanisms of formation of nitrous oxide // Coord. Chem. Rev. – 1999. – Vol. 187. – P. 303-327.

10 Wang F., Harcourt R. D. Electronic Structure Study of the N2O Isomers Using Post-Hartree−Fock and Density Functional Theory Calculations // J. Phys. Chem. – 2000. – Vol. 104. – P. 1304-1310.

11 Garypogly D., Drobyshev A. On some characteristic features of nitrogen monoxide cryocondensation // Fiz. Nizk. Temp. – 1990. – Vol. 16. – P. 936-938.

12 Drobyshev A.S., Samyshkin E.A. A setup for studying radiation emitted during gas deposition on a cold substrate//Instrum. Exp. Techn. – 1997. – Vol. 40. – P. 135-137.

13 Drobyshev A., AldiyarovA. et al.Structural-phase transitions in solid nitrous oxide // Low.Temp. Phys. – 2012. – Vol. 38. – P. 1058.

14 Drobyshev A., Aldiyarov A., Korshikov E., Strzhemechny Yu. Dynamic characteristics of light emission accompanying cryocondensation of nitrous oxide and ethanol // Low.Temp. Phys. – 2015. – Vol. 41. – P. 547.

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Published

2016-09-15

Issue

Section

Thermal Physics and Theoretical Thermal Engineering