Status of the Proton EDM Experiment (pEDM)

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Alexander, Jim, Anastassopoulos, Vassilis, Atoian, Grigor, Baartman, Rick, Baeßler, Stefan, Bedeschi, Franco, Benante, John, Berz, Martin, Blaskiewicz, Michael, Bowcock, Themis, Brown, Kevin, Budker, Dmitry, Burdin, Sergey, Casey, Brendan C., Casse, Gianluigi, Cantatore, Giovanni, Chupp, Timothy, Davoudiasl, Hooman, Denisov, Dmitri, Dhital, Bhawin, Diwan, Milind V., Fatemi, Renee, Fanourakis, George, Fischer, Wolfram, Graham, Peter, Gray, Frederick, Gardikiotis, Antonios, Gatti, Claudio, Gooding, James, Gou, Boxing, Haciomeroglu, Selcuk, Hoffstaetter, Georg H., Huang, Haixin, Incagli, Marco, Jeong, Hoyong, Kaplan, David, Karuza, Marin, Kawall, David, Keshavarzi, Alexander, Kim, On, Kim, Younggeun, Koop, Ivan, Lebedev, Valeri, Lee, Jonathan, Lee, Soohyung, Lusiani, Alberto, Marciano, William J., Maroudas, Marios, Matlashov, Andrei, Meot, Francois, Miller, James P., Morse, William M., Mott, James, Omarov, Zhanibek, Ozben, Cenap, Piacentino, Giovanni Maria, Poelker, Matthew, Pocanic, Dinko, Podobedov, Boris, Price, Joe, Qian, Xin, Rajendran, Surjeet, Raparia, Deepak, Rescia, Sergio, Roberts, B. Lee, Semertzidis, Yannis K., Silenko, Alexander, Soni, Amarjit, Stephenson, Edward, Suleiman, Riad, Syphers, Michael, Thoerngren, Pia, Tishchenko, Volodya, Tsoupas, Nicholaos, Tzamarias, Spyros, Variola, Alessandro, Venanzoni, Graziano, Vilella, Eva, Vossebeld, Joost, Winter, Peter, Wojtsekhowski, Bogdan, Won, Eunil, Zioutas, Konstantin
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866915254746742784
author Alexander, Jim
Anastassopoulos, Vassilis
Atoian, Grigor
Baartman, Rick
Baeßler, Stefan
Bedeschi, Franco
Benante, John
Berz, Martin
Blaskiewicz, Michael
Bowcock, Themis
Brown, Kevin
Budker, Dmitry
Burdin, Sergey
Casey, Brendan C.
Casse, Gianluigi
Cantatore, Giovanni
Chupp, Timothy
Davoudiasl, Hooman
Denisov, Dmitri
Dhital, Bhawin
Diwan, Milind V.
Fatemi, Renee
Fanourakis, George
Fischer, Wolfram
Graham, Peter
Gray, Frederick
Gardikiotis, Antonios
Gatti, Claudio
Gooding, James
Gou, Boxing
Haciomeroglu, Selcuk
Hoffstaetter, Georg H.
Huang, Haixin
Incagli, Marco
Jeong, Hoyong
Kaplan, David
Karuza, Marin
Kawall, David
Keshavarzi, Alexander
Kim, On
Kim, Younggeun
Koop, Ivan
Lebedev, Valeri
Lee, Jonathan
Lee, Soohyung
Lusiani, Alberto
Marciano, William J.
Maroudas, Marios
Matlashov, Andrei
Meot, Francois
Miller, James P.
Morse, William M.
Mott, James
Omarov, Zhanibek
Ozben, Cenap
Piacentino, Giovanni Maria
Poelker, Matthew
Pocanic, Dinko
Podobedov, Boris
Price, Joe
Qian, Xin
Rajendran, Surjeet
Raparia, Deepak
Rescia, Sergio
Roberts, B. Lee
Semertzidis, Yannis K.
Silenko, Alexander
Soni, Amarjit
Stephenson, Edward
Suleiman, Riad
Syphers, Michael
Thoerngren, Pia
Tishchenko, Volodya
Tsoupas, Nicholaos
Tzamarias, Spyros
Variola, Alessandro
Venanzoni, Graziano
Vilella, Eva
Vossebeld, Joost
Winter, Peter
Wojtsekhowski, Bogdan
Won, Eunil
Zioutas, Konstantin
author_facet Alexander, Jim
Anastassopoulos, Vassilis
Atoian, Grigor
Baartman, Rick
Baeßler, Stefan
Bedeschi, Franco
Benante, John
Berz, Martin
Blaskiewicz, Michael
Bowcock, Themis
Brown, Kevin
Budker, Dmitry
Burdin, Sergey
Casey, Brendan C.
Casse, Gianluigi
Cantatore, Giovanni
Chupp, Timothy
Davoudiasl, Hooman
Denisov, Dmitri
Dhital, Bhawin
Diwan, Milind V.
Fatemi, Renee
Fanourakis, George
Fischer, Wolfram
Graham, Peter
Gray, Frederick
Gardikiotis, Antonios
Gatti, Claudio
Gooding, James
Gou, Boxing
Haciomeroglu, Selcuk
Hoffstaetter, Georg H.
Huang, Haixin
Incagli, Marco
Jeong, Hoyong
Kaplan, David
Karuza, Marin
Kawall, David
Keshavarzi, Alexander
Kim, On
Kim, Younggeun
Koop, Ivan
Lebedev, Valeri
Lee, Jonathan
Lee, Soohyung
Lusiani, Alberto
Marciano, William J.
Maroudas, Marios
Matlashov, Andrei
Meot, Francois
Miller, James P.
Morse, William M.
Mott, James
Omarov, Zhanibek
Ozben, Cenap
Piacentino, Giovanni Maria
Poelker, Matthew
Pocanic, Dinko
Podobedov, Boris
Price, Joe
Qian, Xin
Rajendran, Surjeet
Raparia, Deepak
Rescia, Sergio
Roberts, B. Lee
Semertzidis, Yannis K.
Silenko, Alexander
Soni, Amarjit
Stephenson, Edward
Suleiman, Riad
Syphers, Michael
Thoerngren, Pia
Tishchenko, Volodya
Tsoupas, Nicholaos
Tzamarias, Spyros
Variola, Alessandro
Venanzoni, Graziano
Vilella, Eva
Vossebeld, Joost
Winter, Peter
Wojtsekhowski, Bogdan
Won, Eunil
Zioutas, Konstantin
contents The Proton EDM Experiment (pEDM) is the first direct search for the proton electric dipole moment (EDM) with the aim of being the first experiment to probe the Standard Model (SM) prediction of any particle EDM. Phase-I of pEDM will achieve $10^{-29} e\cdot$cm, improving current indirect limits by four orders of magnitude. This will establish a new standard of precision in nucleon EDM searches and offer a unique sensitivity to better understand the Strong CP problem. The experiment is ideally positioned to explore physics beyond the Standard Model (BSM), with sensitivity to axionic dark matter via the signal of an oscillating proton EDM and across a wide mass range of BSM models from $\mathcal{O}(1\text{GeV})$ to $\mathcal{O}(10^3\text{TeV})$. Utilizing the frozen-spin technique in a highly symmetric storage ring that leverages existing infrastructure at Brookhaven National Laboratory (BNL), pEDM builds upon the technological foundation and experimental expertise of the highly successful Muon $g$$-$$2$ Experiments. With significant R\&D and prototyping already underway, pEDM is preparing a conceptual design report (CDR) to offer a cost-effective, high-impact path to discovering new sources of CP violation and advancing our understanding of fundamental physics. It will play a vital role in complementing the physics goals of the next-generation collider while simultaneously contributing to sustaining particle physics research and training early-career researchers during gaps between major collider operations.
format Preprint
id arxiv_https___arxiv_org_abs_2504_12797
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Status of the Proton EDM Experiment (pEDM)
Alexander, Jim
Anastassopoulos, Vassilis
Atoian, Grigor
Baartman, Rick
Baeßler, Stefan
Bedeschi, Franco
Benante, John
Berz, Martin
Blaskiewicz, Michael
Bowcock, Themis
Brown, Kevin
Budker, Dmitry
Burdin, Sergey
Casey, Brendan C.
Casse, Gianluigi
Cantatore, Giovanni
Chupp, Timothy
Davoudiasl, Hooman
Denisov, Dmitri
Dhital, Bhawin
Diwan, Milind V.
Fatemi, Renee
Fanourakis, George
Fischer, Wolfram
Graham, Peter
Gray, Frederick
Gardikiotis, Antonios
Gatti, Claudio
Gooding, James
Gou, Boxing
Haciomeroglu, Selcuk
Hoffstaetter, Georg H.
Huang, Haixin
Incagli, Marco
Jeong, Hoyong
Kaplan, David
Karuza, Marin
Kawall, David
Keshavarzi, Alexander
Kim, On
Kim, Younggeun
Koop, Ivan
Lebedev, Valeri
Lee, Jonathan
Lee, Soohyung
Lusiani, Alberto
Marciano, William J.
Maroudas, Marios
Matlashov, Andrei
Meot, Francois
Miller, James P.
Morse, William M.
Mott, James
Omarov, Zhanibek
Ozben, Cenap
Piacentino, Giovanni Maria
Poelker, Matthew
Pocanic, Dinko
Podobedov, Boris
Price, Joe
Qian, Xin
Rajendran, Surjeet
Raparia, Deepak
Rescia, Sergio
Roberts, B. Lee
Semertzidis, Yannis K.
Silenko, Alexander
Soni, Amarjit
Stephenson, Edward
Suleiman, Riad
Syphers, Michael
Thoerngren, Pia
Tishchenko, Volodya
Tsoupas, Nicholaos
Tzamarias, Spyros
Variola, Alessandro
Venanzoni, Graziano
Vilella, Eva
Vossebeld, Joost
Winter, Peter
Wojtsekhowski, Bogdan
Won, Eunil
Zioutas, Konstantin
High Energy Physics - Experiment
The Proton EDM Experiment (pEDM) is the first direct search for the proton electric dipole moment (EDM) with the aim of being the first experiment to probe the Standard Model (SM) prediction of any particle EDM. Phase-I of pEDM will achieve $10^{-29} e\cdot$cm, improving current indirect limits by four orders of magnitude. This will establish a new standard of precision in nucleon EDM searches and offer a unique sensitivity to better understand the Strong CP problem. The experiment is ideally positioned to explore physics beyond the Standard Model (BSM), with sensitivity to axionic dark matter via the signal of an oscillating proton EDM and across a wide mass range of BSM models from $\mathcal{O}(1\text{GeV})$ to $\mathcal{O}(10^3\text{TeV})$. Utilizing the frozen-spin technique in a highly symmetric storage ring that leverages existing infrastructure at Brookhaven National Laboratory (BNL), pEDM builds upon the technological foundation and experimental expertise of the highly successful Muon $g$$-$$2$ Experiments. With significant R\&D and prototyping already underway, pEDM is preparing a conceptual design report (CDR) to offer a cost-effective, high-impact path to discovering new sources of CP violation and advancing our understanding of fundamental physics. It will play a vital role in complementing the physics goals of the next-generation collider while simultaneously contributing to sustaining particle physics research and training early-career researchers during gaps between major collider operations.
title Status of the Proton EDM Experiment (pEDM)
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2504.12797