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Related papers: Detecting Antihydrogen: The Challenges and the App…

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We discuss aspects of antihydrogen studies, that relate to particle physics ideas and techniques, within the context of the ALPHA experiment at CERN's Antiproton Decelerator facility. We review the fundamental physics motivations for…

The ATHENA experiment recently produced the first atoms of cold antihydrogen. This paper gives a brief review of how this was achieved.

Antihydrogen, the simplest pure-antimatter atomic system, holds the promise of direct tests of matter-antimatter equivalence and CPT invariance, two of the outstanding unanswered questions in modern physics. Antihydrogen is now routinely…

Atomic Physics · Physics 2012-07-11 Eoin Butler

ALPHA is an international project that has recently begun experimentation at CERN's Antiproton Decelerator (AD) facility. The primary goal of ALPHA is stable trapping of cold antihydrogen atoms with the ultimate goal of precise…

ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry with trapped antihydrogen atoms. After reviewing the motivations, we discuss our recent progress toward the initial goal of stable trapping of…

We have demonstrated production of antihydrogen in a 1$,$T solenoidal magnetic field. This field strength is significantly smaller than that used in the first generation experiments ATHENA (3$,$T) and ATRAP (5$,$T). The motivation for using…

ATHENA has been designed as a general purpose detector capable of delivering the full scientific scope of the Electron-Ion Collider. Careful technology choices provide fine tracking and momentum resolution, high performance electromagnetic…

Instrumentation and Detectors · Physics 2022-10-18 ATHENA Collaboration , J. Adam , L. Adamczyk , N. Agrawal , C. Aidala , W. Akers , M. Alekseev , M. M. Allen , F. Ameli , A. Angerami , P. Antonioli , N. J. Apadula , A. Aprahamian , W. Armstrong , M. Arratia , J. R. Arrington , A. Asaturyan , E. C. Aschenauer , K. Augsten , S. Aune , K. Bailey , C. Baldanza , M. Bansal , F. Barbosa , L. Barion , K. Barish , M. Battaglieri , A. Bazilevsky , N. K. Behera , V. Berdnikov , J. Bernauer , C. Berriaud , A. Bhasin , D. S. Bhattacharya , J. Bielcik , J. Bielcikova , C. Bissolotti , W. Boeglin , M. Bondì , M. Borri , F. Bossu , F. Bouyjou , J. D. Brandenburg , A. Bressan , M. Brooks , S. L. Bueltmann , D. Byer , H. Caines , M. Calderon de la Barca Sanchez , V. Calvelli , A. Camsonne , L. Cappelli , M. Capua , M. Castro , D. Cavazza , D. Cebra , A. Celentano , I. Chakaberia , B. Chan , W. Chang , M. Chartier , C. Chatterjee , D. Chen , J. Chen , K. Chen , Z. Chen , H. Chetri , T. Chiarusi , M. Chiosso , X. Chu , J. J. Chwastowski , G. Cicala , E. Cisbani , E. Cline , I. Cloet , D. Colella , M. Contalbrigo , G. Contin , R. Corliss , Y. Corrales-Morales , J. Crafts , C. Crawford , R. Cruz-Torres , D. D'Ago , A. D'Angelo , N. D'Hose , J. Dainton , S. Dalla Torre , S. S. Dasgupta , S. Dash , N. Dashyan , J. Datta , M. Daugherity , R. De Vita , W. Deconinck , M. Defurne , K. Dehmelt , A. Del Dotto , F. Delcarro , G. Dellacasa , Z. S. Demiroglu , G. W. Deptuch , V. Desai , A. Deshpande , K. Devereaux , R. Dhillon , R. Di Salvo , C. Dilks , D. Dixit , S. Dobbs , X. Dong , J. Drachenberg , A. Drees , R. Dupre , M. Durham , R. Dzhygadlo , L. El Fassi , D. Elia , E. Epple , R. Esha , O. Evdokimov , O. Eyser , D. Falchieri , W. Fan , A. Fantini , R. Fatemi , S. Fazio , S. Fegan , A. Filippi , H. Fox , A. Francisco , A. Freeze , S. Furletov , Y. Furletova , C. Gal , S. Gardner , P. Garg , D. Gaskell , K. Gates , M. T. W. Gericke , F. Geurts , C. Ghosh , M. Giacalone , F. Giacomini , S. Gilchrist , D. Glazier , K. Gnanvo , L. Gonella , L. C. Greiner , N. Guerrini , L. Guo , A. Gupta , R. Gupta , W. Guryn , X. He , T. Hemmick , S. Heppelmann , D. Higinbotham , M. Hoballah , A. Hoghmrtsyan , M. Hohlmann , T. Horn , D. Hornidge , H. Z. Huang , C. E. Hyde , P. Iapozzuto , M. Idzik , B. V. Jacak , M. Jadhav , S. Jain , C. Jena , A. Jentsch , Y. Ji , Z. Ji , J. Jia , P. G. Jones , R. W. I. Jones , S. Joosten , S. Joshi , L. Kabir , G. Kalicy , G. Karyan , V. K. S. Kashyap , D. Kawall , H. Ke , M. Kelsey , J. Kim , J. Kiryluk , A. Kiselev , S. R. Klein , H. Klest , V. Kochar , W. Korsch , L. Kosarzewski , A. Kotzinian , F. Krizek , A. Kumar , K. S. Kumar , L. Kumar , R. Kumar , S. Kumar , A. Kunnath , N. Kushawaha , R. Lacey , Y. S. Lai , K. Lalwani , J. Landgraf , L. Lanza , D. Lattuada , M. Lavinsky , J. H. Lee , S. H. Lee , R. Lemmon , A. Lestone , N. Lewis , H. Li , S. Li , W. Li , W. Li , X. Li , X. Li , X. Liang , T. Ligonzo , T. Lin , J. Liu , K. Liu , M. Liu , K. Livingston , N. Liyanage , T. Ljubicic , O. Long , N. Lukow , Y. Ma , J. Mammei , F. Mammoliti , K. Mamo , I. Mandjavidze , S. Maple , D. Marchand , A. Margotti , C. Markert , P. Markowitz , T. Marshall , A. Martin , H. Marukyan , A. Mastroserio , S. Mathew , S. Mayilyan , C. Mayri , M. McEneaney , Y. Mei , L. Meng , F. Meot , J. Metcalfe , Z. -E. Meziani , P. Mihir , R. Milton , A. Mirabella , M. Mirazita , A. Mkrtchyan , H. Mkrtchyan , B. Mohanty , M. Mondal , A. Morreale , A. Movsisyan , D. Muenstermann , A. Mukherjee , C. Munoz Camacho , M. J. Murray , H. Mustafa , M. Myska , B. P. Nachman , K. Nagai , R. Naik , J. P. Naim , J. Nam , B. Nandi , E. Nappi , Md. Nasim , D. Neff , D. Neiret , P. R. Newman , M. Nguyen , S. Niccolai , M. Nie , F. Noferini , J. Norman , F. Noto , A. S. Nunes , T. O'Connor , G. Odyniec , V. A. Okorokov , M. Osipenko , B. Page , C. Palatchi , D. Palmer , P. Palni , S. Pandey , D. Panzieri , S. Park , K. Paschke , C. Pastore , R. N. Patra , A. Paul , S. Paul , C. Pecar , A. Peck , I. Pegg , C. Pellegrino , C. Peng , L. Pentchev , R. Perrino , K. Piotrzkowski , T. Polakovic , M. Ploskon , M. Posik , S. Prasad , R. Preghenella , S. Priens , E. Prifti , M. Przybycien , P. Pujahari , A. Quintero , M. Radici , S. K. Radhakrishnan , S. Rahman , S. Rathi , B. Raue , R. Reed , P. Reimer , J. Reinhold , E. Renner , L. Rignanese , M. Ripani , A. Rizzo , D. Romanov , A. Roy , N. Rubini , M. Ruspa , L. Ruan , F. Sabatie , S. Sadhukhan , N. Sahoo , P. Sahu , D. Samuel , A. Sarkar , M. Sarsour , W. Schmidke , B. Schmookler , C. Schwarz , J. Schwiening , M. Scott , I. Sedgwick , M. Segreti , S. Sekula , R. Seto , N. Shah , A. Shahinyan , D. Sharma , N. Sharma , E. P. Sichtermann , A. Signori , A. Singh , B. K. Singh , S. N. Singh , N. Smirnov , D. Sokhan , R. Soltz , W. Sondheim , S. Spinali , F. Stacchi , R. Staszewski , P. Stepanov , S. Strazzi , I. R. Stroe , X. Sun , B. Surrow , Z. Sweger , T. J. Symons , V. Tadevosyan , A. Tang , E. Tassi , L. Teodorescu , F. Tessarotto , D. Thomas , J. H. Thomas , T. Toll , L. Tomasek , F. Torales-Acosta , P. Tribedy , Triloki , V. Tripathi , R. Trotta , M. Trzebiński , B. A. Trzeciak , O. Tsai , Z. Tu , R. Turrisi , C. Tuve , T. Ullrich , G. M. Urciuoli , A. Valentini , S. Vallarino , M. Vandenbroucke , J. Vanek , G. Vino , G. Volpe , H. Voskanyan , A. Vossen , E. Voutier , G. Wang , Y. Wang , D. Watts , N. Wickramaarachchi , F. Wilson , C. -P. Wong , X. Wu , Y. Wu , J. Xie , Q. -H. Xu , Z. Xu , Z. W. Xu , C. Yang , Q. Yang , Y. Yang , Z. Ye , Z. Ye , L. Yi , Z. Yin , M. Yurov , N. Zachariou , J. Zhang , Y. Zhang , Z. Zhang , Z. Zhang , Y. Zhao , Y. X. Zhao , Z. Zhao , L. Zheng , M. Zurek

Antihydrogen is at the forefront of antimatter research at the CERN Antiproton Decelerator. Experiments aiming to test the fundamental CPT symmetry and antigravity effects require the efficient detection of antihydrogen annihilation events,…

Instrumentation and Detectors · Physics 2017-06-07 Peter Sadowski , Balint Radics , Ananya , Yasunori Yamazaki , Pierre Baldi

Atomic systems of antiparticles are the laboratories of choice for tests of CPT symmetry with antimatter. The ATHENA experiment was the first to report the production of copious amounts of cold antihydrogen in 2002. This article reviews…

The ALPHA collaboration has successfully demonstrated the production and the confinement of cold antihydrogen, $\overline{\mathrm{H}}$. An analysis of trapping data allowed a stringent limit to be placed on the electric charge of the…

The gravitational interaction of antimatter and matter has never been directly probed. ALPHA-g is a novel experiment that aims to perform the first measurement of the antihydrogen gravitational mass. A fundamental requirement for this new…

In 2002, the ATHENA collaboration reported the creation and detection of cold (~15 K) antihydrogen atoms [1]. The observation was based on the complete reconstruction of antihydrogen annihilations, simultaneous and spatially correlated…

Instrumentation and Detectors · Physics 2019-08-14 I. Johnson

The ATHENA experiment at the Antiproton Decelerator facility at CERN aims at testing CPT symmetry with antihydrogen. An overview of the experiment, together with preliminary results of development towards the production of slow antihydrogen…

Nuclear Experiment · Physics 2007-05-23 ATHENA Collaboration , M. C. Fujiwara

Antihydrogen production in a neutral atom trap formed by an octupole-based magnetic field minimum is demonstrated using field-ionization of weakly bound anti-atoms. Using our unique annihilation imaging detector, we correlate antihydrogen…

Production of antihydrogen atoms by mixing antiprotons with a cold, confined, positron plasma depends critically on parameters such as the plasma density and temperature. We discuss non-destructive measurements, based on a novel, real-time…

Since the beginning of operations of the CERN Antiproton Decelerator in July 2000, the successful deceleration, storage and manipulation of antiprotons has led to remarkable progress in the production of antimatter. The ATHENA Collaboration…

Antihydrogen, the atomic bound state of an antiproton and a positron, was produced at low energy for the first time by the ATHENA experiment, marking an important first step for precision studies of atomic antimatter. This paper describes…

Recently, antihydrogen atoms were trapped at CERN in a magnetic minimum (minimum-B) trap formed by superconducting octupole and mirror magnet coils. The trapped antiatoms were detected by rapidly turning off these magnets, thereby…

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