These tools will no longer be maintained as of December 31, 2024. Archived website can be found here. PubMed4Hh GitHub repository can be found here. Contact NLM Customer Service if you have questions.
144 related articles for article (PubMed ID: 39101154)
1. Production of hypernuclei from antiproton capture within a relativistic transport model. Schmidt A; Gaitanos T; Obertelli A; Rodríguez-Sánchez JL Eur Phys J A Hadron Nucl; 2024; 60(3):55. PubMed ID: 39101154 [TBL] [Abstract][Full Text] [Related]
2. Segmented scintillation detectors with silicon photomultiplier readout for measuring antiproton annihilations. Sótér A; Todoroki K; Kobayashi T; Barna D; Horváth D; Hori M Rev Sci Instrum; 2014 Feb; 85(2):023302. PubMed ID: 24593349 [TBL] [Abstract][Full Text] [Related]
3. Production of (4)(double Lambda)H hypernuclei. Ahn JK; Ajimura S; Akikawa H; Bassalleck B; Berdoz A; Carman D; Chrien RE; Davis CA; Eugenio P; Fischer H; Franklin GB; Franz J; Fukuda T; Gan L; Hotchi H; Ichikawa A; Imai K; Kahana SH; Khaustov P; Kishimoto T; Koran P; Kohri H; Kourepin A; Kubota K; Landry M; May M; Meyer C; Meziani Z; Minami S; Miyachi T; Nagae T; Nakano J; Outa H; Paschke K; Pile P; Prokhabatilov M; Quinn BP; Rasin V; Rusek A; Schmitt H; Schumacher RA; Sekimoto M; Shileev K; Shimizu Y; Sutter R; Tamagawa T; Tang L; Tanida K; Yamamoto K; Yuan L Phys Rev Lett; 2001 Sep; 87(13):132504. PubMed ID: 11580581 [TBL] [Abstract][Full Text] [Related]
4. Observation of the antimatter hypernucleus STAR Collaboration Nature; 2024 Aug; 632(8027):1026-1031. PubMed ID: 39169195 [TBL] [Abstract][Full Text] [Related]
6. Measurements of _{Λ}^{3}H and _{Λ}^{4}H Lifetimes and Yields in Au+Au Collisions in the High Baryon Density Region. Abdallah MS; Aboona BE; Adam J; Adamczyk L; Adams JR; Adkins JK; Agakishiev G; Aggarwal I; Aggarwal MM; Ahammed Z; Alekseev I; Anderson DM; Aparin A; Aschenauer EC; Ashraf MU; Atetalla FG; Attri A; Averichev GS; Bairathi V; Baker W; Ball Cap JG; Barish K; Behera A; Bellwied R; Bhagat P; Bhasin A; Bielcik J; Bielcikova J; Bordyuzhin IG; Brandenburg JD; Brandin AV; Bunzarov I; Cai XZ; Caines H; Calderón de la Barca Sánchez M; Cebra D; Chakaberia I; Chaloupka P; Chan BK; Chang FH; Chang Z; Chankova-Bunzarova N; Chatterjee A; Chattopadhyay S; Chen D; Chen J; Chen JH; Chen X; Chen Z; Cheng J; Chevalier M; Choudhury S; Christie W; Chu X; Crawford HJ; Csanád M; Daugherity M; Dedovich TG; Deppner IM; Derevschikov AA; Dhamija A; Di Carlo L; Didenko L; Dixit P; Dong X; Drachenberg JL; Duckworth E; Dunlop JC; Elsey N; Engelage J; Eppley G; Esumi S; Evdokimov O; Ewigleben A; Eyser O; Fatemi R; Fawzi FM; Fazio S; Federic P; Fedorisin J; Feng CJ; Feng Y; Filip P; Finch E; Fisyak Y; Francisco A; Fu C; Fulek L; Gagliardi CA; Galatyuk T; Geurts F; Ghimire N; Gibson A; Gopal K; Gou X; Grosnick D; Gupta A; Guryn W; Hamad AI; Hamed A; Han Y; Harabasz S; Harasty MD; Harris JW; Harrison H; He S; He W; He XH; He Y; Heppelmann S; Heppelmann S; Herrmann N; Hoffman E; Holub L; Hu Y; Huang H; Huang HZ; Huang SL; Huang T; Huang X; Huang Y; Humanic TJ; Igo G; Isenhower D; Jacobs WW; Jena C; Jentsch A; Ji Y; Jia J; Jiang K; Ju X; Judd EG; Kabana S; Kabir ML; Kagamaster S; Kalinkin D; Kang K; Kapukchyan D; Kauder K; Ke HW; Keane D; Kechechyan A; Kelsey M; Khyzhniak YV; Kikoła DP; Kim C; Kimelman B; Kincses D; Kisel I; Kiselev A; Knospe AG; Ko HS; Kochenda L; Kosarzewski LK; Kramarik L; Kravtsov P; Kumar L; Kumar S; Kunnawalkam Elayavalli R; Kwasizur JH; Lacey R; Lan S; Landgraf JM; Lauret J; Lebedev A; Lednicky R; Lee JH; Leung YH; Lewis N; Li C; Li C; Li W; Li X; Li Y; Liang X; Liang Y; Licenik R; Lin T; Lin Y; Lisa MA; Liu F; Liu H; Liu H; Liu P; Liu T; Liu X; Liu Y; Liu Z; Ljubicic T; Llope WJ; Longacre RS; Loyd E; Lukow NS; Luo XF; Ma L; Ma R; Ma YG; Magdy N; Mallick D; Margetis S; Markert C; Matis HS; Mazer JA; Minaev NG; Mioduszewski S; Mohanty B; Mondal MM; Mooney I; Morozov DA; Mukherjee A; Nagy M; Nam JD; Nasim M; Nayak K; Neff D; Nelson JM; Nemes DB; Nie M; Nigmatkulov G; Niida T; Nishitani R; Nogach LV; Nonaka T; Nunes AS; Odyniec G; Ogawa A; Oh S; Okorokov VA; Page BS; Pak R; Pan J; Pandav A; Pandey AK; Panebratsev Y; Parfenov P; Pawlik B; Pawlowska D; Perkins C; Pinsky L; Pintér RL; Pluta J; Pokhrel BR; Ponimatkin G; Porter J; Posik M; Prozorova V; Pruthi NK; Przybycien M; Putschke J; Qiu H; Quintero A; Racz C; Radhakrishnan SK; Raha N; Ray RL; Reed R; Ritter HG; Robotkova M; Rogachevskiy OV; Romero JL; Roy D; Ruan L; Rusnak J; Sahoo AK; Sahoo NR; Sako H; Salur S; Sandweiss J; Sato S; Schmidke WB; Schmitz N; Schweid BR; Seck F; Seger J; Sergeeva M; Seto R; Seyboth P; Shah N; Shahaliev E; Shanmuganathan PV; Shao M; Shao T; Sheikh AI; Shen DY; Shi SS; Shi Y; Shou QY; Sichtermann EP; Sikora R; Simko M; Singh J; Singha S; Skoby MJ; Smirnov N; Söhngen Y; Solyst W; Sorensen P; Spinka HM; Srivastava B; Stanislaus TDS; Stefaniak M; Stewart DJ; Strikhanov M; Stringfellow B; Suaide AAP; Sumbera M; Summa B; Sun XM; Sun X; Sun Y; Sun Y; Surrow B; Svirida DN; Sweger ZW; Szymanski P; Tang AH; Tang Z; Taranenko A; Tarnowsky T; Thomas JH; Timmins AR; Tlusty D; Todoroki T; Tokarev M; Tomkiel CA; Trentalange S; Tribble RE; Tribedy P; Tripathy SK; Truhlar T; Trzeciak BA; Tsai OD; Tu Z; Ullrich T; Underwood DG; Upsal I; Van Buren G; Vanek J; Vasiliev AN; Vassiliev I; Verkest V; Videbaek F; Vokal S; Voloshin SA; Wang F; Wang G; Wang JS; Wang P; Wang X; Wang Y; Wang Y; Wang Z; Webb JC; Weidenkaff PC; Wen L; Westfall GD; Wieman H; Wissink SW; Witt R; Wu J; Wu J; Wu Y; Xi B; Xiao ZG; Xie G; Xie W; Xu H; Xu N; Xu QH; Xu Y; Xu Z; Xu Z; Yan G; Yang C; Yang Q; Yang S; Yang Y; Ye Z; Ye Z; Yi L; Yip K; Yu Y; Zbroszczyk H; Zha W; Zhang C; Zhang D; Zhang J; Zhang S; Zhang S; Zhang XP; Zhang Y; Zhang Y; Zhang Y; Zhang ZJ; Zhang Z; Zhang Z; Zhao J; Zhou C; Zhou Y; Zhu X; Zurek M; Zyzak M; Phys Rev Lett; 2022 May; 128(20):202301. PubMed ID: 35657899 [TBL] [Abstract][Full Text] [Related]
7. Ab initio description of p-shell hypernuclei. Wirth R; Gazda D; Navrátil P; Calci A; Langhammer J; Roth R Phys Rev Lett; 2014 Nov; 113(19):192502. PubMed ID: 25415901 [TBL] [Abstract][Full Text] [Related]
8. Nucleon-nucleon coincidence spectra in the nonmesonic weak decay of lambda hypernuclei and the gamma(n)/gamma(p) puzzle. Garbarino G; Parreño A; Ramos A Phys Rev Lett; 2003 Sep; 91(11):112501. PubMed ID: 14525417 [TBL] [Abstract][Full Text] [Related]
9. Observation of Λ(4)H Hyperhydrogen by Decay-Pion Spectroscopy in Electron Scattering. Esser A; Nagao S; Schulz F; Achenbach P; Ayerbe Gayoso C; Böhm R; Borodina O; Bosnar D; Bozkurt V; Debenjak L; Distler MO; Friščić I; Fujii Y; Gogami T; Hashimoto O; Hirose S; Kanda H; Kaneta M; Kim E; Kohl Y; Kusaka J; Margaryan A; Merkel H; Mihovilovič M; Müller U; Nakamura SN; Pochodzalla J; Rappold C; Reinhold J; Saito TR; Sanchez Lorente A; Sánchez Majos S; Schlimme BS; Schoth M; Sfienti C; Širca S; Tang L; Thiel M; Tsukada K; Weber A; Yoshida K; Phys Rev Lett; 2015 Jun; 114(23):232501. PubMed ID: 26196794 [TBL] [Abstract][Full Text] [Related]
10. What does the free space Lambda Lambda interaction predict for Lambda Lambda hypernuclei? Albertus C; Amaro JE; Nieves J Phys Rev Lett; 2002 Jul; 89(3):032501. PubMed ID: 12144386 [TBL] [Abstract][Full Text] [Related]
11. Asymmetries in the nonmesonic weak decay of polarized lambda hypernuclei. Alberico WM; Garbarino G; Parreño A; Ramos A Phys Rev Lett; 2005 Mar; 94(8):082501. PubMed ID: 15783883 [TBL] [Abstract][Full Text] [Related]
12. An antiproton simulation study using MCNPX for radiation therapy. Michael Handley S; Ahmad S J Xray Sci Technol; 2011; 19(3):345-53. PubMed ID: 21876284 [TBL] [Abstract][Full Text] [Related]
13. Fission of heavy hypernuclei formed in antiproton annihilation. Armstrong TA; Bocquet JP; Ericsson G; Johansson T; Krogulski T; Lewis RA; Malek F; Maurel M; Monnand E; Mougey J; Nifenecker H; Passaneau J; Perrin P; Polikanov SM; Rey-Campagnolle M; Ristori C; Smith GA; Tibell G Phys Rev C Nucl Phys; 1993 May; 47(5):1957-1969. PubMed ID: 9968650 [No Abstract] [Full Text] [Related]
14. The hypernuclei (4)(lambda)He and (4)(lambda)H: challenges for modern hyperon-nucleon forces. Nogga A; Kamada H; Glöckle W Phys Rev Lett; 2002 Apr; 88(17):172501. PubMed ID: 12005746 [TBL] [Abstract][Full Text] [Related]
15. Evaluation on Geant4 Hadronic Models for Pion Minus, Pion Plus and Neutron Particles as Major Antiproton Annihilation Products. Tavakoli MB; Mohammadi MM; Reiazi R; Jabbari K J Med Signals Sens; 2015; 5(2):105-9. PubMed ID: 26120569 [TBL] [Abstract][Full Text] [Related]
16. Resolving the Λ Hypernuclear Overbinding Problem in Pionless Effective Field Theory. Contessi L; Barnea N; Gal A Phys Rev Lett; 2018 Sep; 121(10):102502. PubMed ID: 30240262 [TBL] [Abstract][Full Text] [Related]
17. Comparison of electromagnetic and hadronic models generated using Geant 4 with antiproton dose measured in CERN. Tavakoli MB; Reiazi R; Mohammadi MM; Jabbari K J Med Phys; 2015; 40(2):109-14. PubMed ID: 26170558 [TBL] [Abstract][Full Text] [Related]
18. Measurement of interaction between antiprotons. STAR Collaboration Nature; 2015 Nov; 527(7578):345-8. PubMed ID: 26536116 [TBL] [Abstract][Full Text] [Related]
19. Constraint of the Nuclear Dissipation Coefficient in Fission of Hypernuclei. Rodríguez-Sánchez JL; Cugnon J; David JC; Hirtz J; Kelić-Heil A; Vidaña I Phys Rev Lett; 2023 Mar; 130(13):132501. PubMed ID: 37067321 [TBL] [Abstract][Full Text] [Related]
20. Observation of Directed Flow of Hypernuclei _{Λ}^{3}H and _{Λ}^{4}H in sqrt[s_{NN}]=3 GeV Au+Au Collisions at RHIC. Aboona BE; Adam J; Adams JR; Agakishiev G; Aggarwal I; Aggarwal MM; Ahammed Z; Aitbaev A; Alekseev I; Anderson DM; Aparin A; Atchison J; Averichev GS; Bairathi V; Baker W; Ball Cap JG; Barish K; Bhagat P; Bhasin A; Bhatta S; Bordyuzhin IG; Brandenburg JD; Brandin AV; Cai XZ; Caines H; Calderón de la Barca Sánchez M; Cebra D; Ceska J; Chakaberia I; Chan BK; Chang Z; Chen D; Chen J; Chen JH; Chen Z; Cheng J; Cheng Y; Choudhury S; Christie W; Chu X; Crawford HJ; Dale-Gau G; Das A; Daugherity M; Dedovich TG; Deppner IM; Derevschikov AA; Dhamija A; Di Carlo L; Didenko L; Dixit P; Dong X; Drachenberg JL; Duckworth E; Dunlop JC; Engelage J; Eppley G; Esumi S; Evdokimov O; Ewigleben A; Eyser O; Fatemi R; Fazio S; Feng CJ; Feng Y; Finch E; Fisyak Y; Flor FA; Fu C; Geurts F; Ghimire N; Gibson A; Gopal K; Gou X; Grosnick D; Gupta A; Hamed A; Han Y; Harasty MD; Harris JW; Harrison H; He W; He XH; He Y; Hu C; Hu Q; Hu Y; Huang H; Huang HZ; Huang SL; Huang T; Huang X; Huang Y; Huang Y; Humanic TJ; Isenhower D; Isshiki M; Jacobs WW; Jalotra A; Jena C; Ji Y; Jia J; Jin C; Ju X; Judd EG; Kabana S; Kabir ML; Kalinkin D; Kang K; Kapukchyan D; Kauder K; Ke HW; Keane D; Kechechyan A; Kelsey M; Kimelman B; Kiselev A; Knospe AG; Ko HS; Kochenda L; Korobitsin AA; Kravtsov P; Kumar L; Kumar S; Kunnawalkam Elayavalli R; Lacey R; Landgraf JM; Lebedev A; Lednicky R; Lee JH; Leung YH; Lewis N; Li C; Li C; Li W; Li X; Li Y; Li Y; Li Z; Liang X; Liang Y; Lin T; Liu C; Liu F; Liu H; Liu H; Liu L; Liu T; Liu X; Liu Y; Liu Z; Ljubicic T; Llope WJ; Lomicky O; Longacre RS; Loyd E; Lu T; Lukow NS; Luo XF; Luong VB; Ma L; Ma R; Ma YG; Magdy N; Mallick D; Margetis S; Matis HS; Mazer JA; McNamara G; Mi K; Minaev NG; Mohanty B; Mooney I; Morozov DA; Mudrokh A; Nagy MI; Nain AS; Nam JD; Nasim M; Neff D; Nelson JM; Nemes DB; Nie M; Nigmatkulov G; Niida T; Nishitani R; Nogach LV; Nonaka T; Nunes AS; Odyniec G; Ogawa A; Oh S; Okorokov VA; Okubo K; Page BS; Pak R; Pan J; Pandav A; Pandey AK; Panebratsev Y; Pani T; Parfenov P; Paul A; Perkins C; Pokhrel BR; Posik M; Protzman T; Pruthi NK; Putschke J; Qin Z; Qiu H; Quintero A; Racz C; Radhakrishnan SK; Raha N; Ray RL; Ritter HG; Robertson CW; Rogachevsky OV; Rosales Aguilar MA; Roy D; Ruan L; Sahoo AK; Sahoo NR; Sako H; Salur S; Samigullin E; Sato S; Schmidke WB; Schmitz N; Seger J; Seto R; Seyboth P; Shah N; Shahaliev E; Shanmuganathan PV; Shao M; Shao T; Sharma M; Sharma N; Sharma R; Sharma SR; Sheikh AI; Shen DY; Shen K; Shi SS; Shi Y; Shou QY; Si F; Singh J; Singha S; Sinha P; Skoby MJ; Söhngen Y; Song Y; Srivastava B; Stanislaus TDS; Stewart DJ; Strikhanov M; Stringfellow B; Su Y; Sun C; Sun X; Sun Y; Sun Y; Surrow B; Svirida DN; Sweger ZW; Tamis A; Tang AH; Tang Z; Taranenko A; Tarnowsky T; Thomas JH; Tlusty D; Todoroki T; Tokarev MV; Tomkiel CA; Trentalange S; Tribble RE; Tribedy P; Tsai OD; Tsang CY; Tu Z; Ullrich T; Underwood DG; Upsal I; Van Buren G; Vasiliev AN; Verkest V; Videbæk F; Vokal S; Voloshin SA; Wang F; Wang G; Wang JS; Wang X; Wang Y; Wang Y; Wang Y; Wang Z; Webb JC; Weidenkaff PC; Westfall GD; Wieman H; Wilks G; Wissink SW; Wu J; Wu J; Wu X; Wu Y; Xi B; Xiao ZG; Xie W; Xu H; Xu N; Xu QH; Xu Y; Xu Y; Xu Z; Xu Z; Yan G; Yan Z; Yang C; Yang Q; Yang S; Yang Y; Ye Z; Ye Z; Yi L; Yip K; Yu Y; Zha W; Zhang C; Zhang D; Zhang J; Zhang S; Zhang X; Zhang Y; Zhang Y; Zhang Y; Zhang ZJ; Zhang Z; Zhang Z; Zhao F; Zhao J; Zhao M; Zhou C; Zhou J; Zhou S; Zhou Y; Zhu X; Zurek M; Zyzak M; Phys Rev Lett; 2023 May; 130(21):212301. PubMed ID: 37295104 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]