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Main Authors: Arrowsmith-Kron, Gordon, Athanasakis-Kaklamanakis, Michail, Au, Mia, Ballof, Jochen, Berger, Robert, Borschevsky, Anastasia, Breier, Alexander A., Buchinger, Fritz, Budker, Dmitry, Caldwell, Luke, Charles, Christopher, Dattani, Nike, de Groote, Ruben P., DeMille, David, Dickel, Timo, Dobaczewski, Jacek, Düllmann, Christoph E., Eliav, Ephraim, Engel, Jon, Fan, Mingyu, Flambaum, Victor, Flanagan, Kieran T., Gaiser, Alyssa, Ruiz, Ronald Garcia, Gaul, Konstantin, Giesen, Thomas F., Ginges, Jacinda, Gottberg, Alexander, Gwinner, Gerald, Heinke, Reinhard, Hoekstra, Steven, Holt, Jason D., Hutzler, Nicholas R., Jayich, Andrew, Karthein, Jonas, Leach, Kyle G., Madison, Kirk, Malbrunot-Ettenauer, Stephan, Miyagi, Takayuki, Moore, Iain D., Moroch, Scott, Navrátil, Petr, Nazarewicz, Witold, Neyens, Gerda, Norrgard, Eric, Nusgart, Nicholas, Pašteka, Lukáš F., Petrov, Alexander N., Plass, Wolfgang, Ready, Roy A., Reiter, Moritz Pascal, Reponen, Mikael, Rothe, Sebastian, Safronova, Marianna, Scheidenberger, Christoph, Shindler, Andrea, Singh, Jaideep T., Skripnikov, Leonid V., Titov, Anatoly V., Udrescu, Silviu-Marian, Wilkins, Shane G., Yang, Xiaofei
Format: Preprint
Published: 2023
Subjects:
Online Access:https://arxiv.org/abs/2302.02165
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author Arrowsmith-Kron, Gordon
Athanasakis-Kaklamanakis, Michail
Au, Mia
Ballof, Jochen
Berger, Robert
Borschevsky, Anastasia
Breier, Alexander A.
Buchinger, Fritz
Budker, Dmitry
Caldwell, Luke
Charles, Christopher
Dattani, Nike
de Groote, Ruben P.
DeMille, David
Dickel, Timo
Dobaczewski, Jacek
Düllmann, Christoph E.
Eliav, Ephraim
Engel, Jon
Fan, Mingyu
Flambaum, Victor
Flanagan, Kieran T.
Gaiser, Alyssa
Ruiz, Ronald Garcia
Gaul, Konstantin
Giesen, Thomas F.
Ginges, Jacinda
Gottberg, Alexander
Gwinner, Gerald
Heinke, Reinhard
Hoekstra, Steven
Holt, Jason D.
Hutzler, Nicholas R.
Jayich, Andrew
Karthein, Jonas
Leach, Kyle G.
Madison, Kirk
Malbrunot-Ettenauer, Stephan
Miyagi, Takayuki
Moore, Iain D.
Moroch, Scott
Navrátil, Petr
Nazarewicz, Witold
Neyens, Gerda
Norrgard, Eric
Nusgart, Nicholas
Pašteka, Lukáš F.
Petrov, Alexander N.
Plass, Wolfgang
Ready, Roy A.
Reiter, Moritz Pascal
Reponen, Mikael
Rothe, Sebastian
Safronova, Marianna
Scheidenberger, Christoph
Shindler, Andrea
Singh, Jaideep T.
Skripnikov, Leonid V.
Titov, Anatoly V.
Udrescu, Silviu-Marian
Wilkins, Shane G.
Yang, Xiaofei
author_facet Arrowsmith-Kron, Gordon
Athanasakis-Kaklamanakis, Michail
Au, Mia
Ballof, Jochen
Berger, Robert
Borschevsky, Anastasia
Breier, Alexander A.
Buchinger, Fritz
Budker, Dmitry
Caldwell, Luke
Charles, Christopher
Dattani, Nike
de Groote, Ruben P.
DeMille, David
Dickel, Timo
Dobaczewski, Jacek
Düllmann, Christoph E.
Eliav, Ephraim
Engel, Jon
Fan, Mingyu
Flambaum, Victor
Flanagan, Kieran T.
Gaiser, Alyssa
Ruiz, Ronald Garcia
Gaul, Konstantin
Giesen, Thomas F.
Ginges, Jacinda
Gottberg, Alexander
Gwinner, Gerald
Heinke, Reinhard
Hoekstra, Steven
Holt, Jason D.
Hutzler, Nicholas R.
Jayich, Andrew
Karthein, Jonas
Leach, Kyle G.
Madison, Kirk
Malbrunot-Ettenauer, Stephan
Miyagi, Takayuki
Moore, Iain D.
Moroch, Scott
Navrátil, Petr
Nazarewicz, Witold
Neyens, Gerda
Norrgard, Eric
Nusgart, Nicholas
Pašteka, Lukáš F.
Petrov, Alexander N.
Plass, Wolfgang
Ready, Roy A.
Reiter, Moritz Pascal
Reponen, Mikael
Rothe, Sebastian
Safronova, Marianna
Scheidenberger, Christoph
Shindler, Andrea
Singh, Jaideep T.
Skripnikov, Leonid V.
Titov, Anatoly V.
Udrescu, Silviu-Marian
Wilkins, Shane G.
Yang, Xiaofei
contents Molecules containing short-lived, radioactive nuclei are uniquely positioned to enable a wide range of scientific discoveries in the areas of fundamental symmetries, astrophysics, nuclear structure, and chemistry. Recent advances in the ability to create, cool, and control complex molecules down to the quantum level, along with recent and upcoming advances in radioactive species production at several facilities around the world, create a compelling opportunity to coordinate and combine these efforts to bring precision measurement and control to molecules containing extreme nuclei. In this manuscript, we review the scientific case for studying radioactive molecules, discuss recent atomic, molecular, nuclear, astrophysical, and chemical advances which provide the foundation for their study, describe the facilities where these species are and will be produced, and provide an outlook for the future of this nascent field.
format Preprint
id arxiv_https___arxiv_org_abs_2302_02165
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Opportunities for Fundamental Physics Research with Radioactive Molecules
Arrowsmith-Kron, Gordon
Athanasakis-Kaklamanakis, Michail
Au, Mia
Ballof, Jochen
Berger, Robert
Borschevsky, Anastasia
Breier, Alexander A.
Buchinger, Fritz
Budker, Dmitry
Caldwell, Luke
Charles, Christopher
Dattani, Nike
de Groote, Ruben P.
DeMille, David
Dickel, Timo
Dobaczewski, Jacek
Düllmann, Christoph E.
Eliav, Ephraim
Engel, Jon
Fan, Mingyu
Flambaum, Victor
Flanagan, Kieran T.
Gaiser, Alyssa
Ruiz, Ronald Garcia
Gaul, Konstantin
Giesen, Thomas F.
Ginges, Jacinda
Gottberg, Alexander
Gwinner, Gerald
Heinke, Reinhard
Hoekstra, Steven
Holt, Jason D.
Hutzler, Nicholas R.
Jayich, Andrew
Karthein, Jonas
Leach, Kyle G.
Madison, Kirk
Malbrunot-Ettenauer, Stephan
Miyagi, Takayuki
Moore, Iain D.
Moroch, Scott
Navrátil, Petr
Nazarewicz, Witold
Neyens, Gerda
Norrgard, Eric
Nusgart, Nicholas
Pašteka, Lukáš F.
Petrov, Alexander N.
Plass, Wolfgang
Ready, Roy A.
Reiter, Moritz Pascal
Reponen, Mikael
Rothe, Sebastian
Safronova, Marianna
Scheidenberger, Christoph
Shindler, Andrea
Singh, Jaideep T.
Skripnikov, Leonid V.
Titov, Anatoly V.
Udrescu, Silviu-Marian
Wilkins, Shane G.
Yang, Xiaofei
Nuclear Experiment
Nuclear Theory
Atomic Physics
Molecules containing short-lived, radioactive nuclei are uniquely positioned to enable a wide range of scientific discoveries in the areas of fundamental symmetries, astrophysics, nuclear structure, and chemistry. Recent advances in the ability to create, cool, and control complex molecules down to the quantum level, along with recent and upcoming advances in radioactive species production at several facilities around the world, create a compelling opportunity to coordinate and combine these efforts to bring precision measurement and control to molecules containing extreme nuclei. In this manuscript, we review the scientific case for studying radioactive molecules, discuss recent atomic, molecular, nuclear, astrophysical, and chemical advances which provide the foundation for their study, describe the facilities where these species are and will be produced, and provide an outlook for the future of this nascent field.
title Opportunities for Fundamental Physics Research with Radioactive Molecules
topic Nuclear Experiment
Nuclear Theory
Atomic Physics
url https://arxiv.org/abs/2302.02165