Measurement of the Polarization of a Deuterium Atomic Beam Using a Lamb Shift Polarimeter
- Autores: Toporkov D.K.1,2, Glukhovchenko S.Y.1, Nikolenko D.M.1, Rachek I.A.1, Semeonov A.M.1,3, Shestakov Y.V.1,2
- 
							Afiliações: 
							- Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences
- Novosibirsk State University
- Novosibirsk State Technical University
 
- Edição: Nº 4 (2023)
- Páginas: 13-20
- Seção: ТЕХНИКА ЯДЕРНОГО ЭКСПЕРИМЕНТА
- URL: https://filvestnik.nvsu.ru/0032-8162/article/view/670457
- DOI: https://doi.org/10.31857/S0032816223030278
- EDN: https://elibrary.ru/CWXYAS
- ID: 670457
Citar
Texto integral
 Acesso aberto
		                                Acesso aberto Acesso está concedido
						Acesso está concedido Acesso é pago ou somente para assinantes
		                                							Acesso é pago ou somente para assinantes
		                                					Resumo
A cryogenic source of polarized deuterium atoms is described. This source is used in the experiment on measuring the analyzing powers in the deuteron photodisintegration reaction at the VEPP-3 electron storage ring at the Budker Institute of Nuclear Physics. The efficiency has been measured for atomic transitions to a specified energy state in the medium field transition (MFT) unit, in the strong field transition (SFT) unit, and for joint operation of these units. A Lamb shift polarimeter was used in the measurements. The measured efficiency of the units is over 90%. The procedure for determining the background in the polarimeter is presented. The use of pumping in the ionizer chamber is expected to significantly reduce the background signal.
Sobre autores
D. Toporkov
Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences; Novosibirsk State University
														Email: D.K.Toporkov@inp.nsk.su
				                					                																			                												                								630090, Novosibirsk, Russia; 630090, Novosibirsk, Russia						
S. Glukhovchenko
Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences
														Email: D.K.Toporkov@inp.nsk.su
				                					                																			                												                								630090, Novosibirsk, Russia						
D. Nikolenko
Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences
														Email: D.K.Toporkov@inp.nsk.su
				                					                																			                												                								630090, Novosibirsk, Russia						
I. Rachek
Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences
														Email: D.K.Toporkov@inp.nsk.su
				                					                																			                												                								630090, Novosibirsk, Russia						
A. Semeonov
Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences; Novosibirsk State Technical University
														Email: D.K.Toporkov@inp.nsk.su
				                					                																			                												                								630090, Novosibirsk, Russia; 630073, Novosibirsk, Russia						
Yu. Shestakov
Budker Institute of Nuclear Physics (BINP), Siberian Branch, Russian Academy of Sciences; Novosibirsk State University
							Autor responsável pela correspondência
							Email: D.K.Toporkov@inp.nsk.su
				                					                																			                												                								630090, Novosibirsk, Russia; 630090, Novosibirsk, Russia						
Bibliografia
- Vasilishin B.I., Fix A.I., Gauzshtein V.V., Darwish E.M., Kuzin M.Ya., Levchuk M.I., Loginov A.Yu., Nikolenko D.M., Rachek I.A., Shestakov Yu.V., Toporkov D.K., Yurchenko A.V., Zevakov S.A., Bogomyagkov A.V., Zhuravlev A.N. et al. // Physical Review C. 2022. V. 106. P. 024003. https://doi.org/10.1103/PhysRevC.106.024003
- Isaeva L.G., Lazarenko B.A., Mishnev S.I., Nikolenko D.M., Popov S.G., Rachek I.A., Shestakov Yu.V., Toporkov D.K., Vesnovsky D.K., Zevakov S.A. // Nucl. Instrum. and Methods A. 1998. V. 411. P. 201. https://doi.org/10.1016/S0168-9002(98)00352-0
- Plis Yu.A., Soroko L.M. // Nucl. Instrum. and Methods. 1976. V. 135 (3). P. 497. https://doi.org/10.1016/0029-554X(76)90064-1
- Engels R., Emmerich R., Ley J., Tenckhoff G., Paetz gen. Schieck H., Mikirtytchiants M., Rathmann F., Seyfarth H., Vassiliev A. // Rev. of Scie. Instrum. 2003. V. 74 (11). P. 4607. https://doi.org/10.1063/1.1619550
- Dyug M.V., Lazarenko B.A., Mishnev S.I., Nikolenko D.M., Rachek I.A., Shestakov Yu.V., Sadykov R.Sh., Toporkov D.K., Zevakov S.A., Osipov A.N., Stibunov V.N. // Nucl. Instrum. and Methods in Phys. Res. A. 2005. V. 536. P. 344. https://doi.org/10.1016/j.nima.2004.08.096
- Rachek I.A., Barkov L.M., Belostotsky S.L., Dmitriev V.F., Dyug M.V., Gilman R., Holt R.J., Lazarenko B.A., Mishnev S.I., Nelyubin V.V., Nikolenko D.M., Osipov A.V., Potterveld D.H., Sadykov R.Sh., Shestakov Yu.V., Stibunov V.N., Toporkov D.K., de Vries H., Zevakov S.A. // Physical Review Letters. 2007. V. 98. P. 182303. https://doi.org/10.1103/PhysRevLett.98.182303
Arquivos suplementares
 
				
			 
						 
						 
						 
						 
					 
									

 
  
  
  Enviar artigo por via de e-mail
			Enviar artigo por via de e-mail 











