24 Papers
21 Citations
S. Banik is an academic researcher from National Institute of Science Education and Research. The author has contributed to research in topics: Dark matter & Semiconductor detector. The author has an hindex of 9, co-authored 12 publications.
Chat about Author
Papers
First Dark Matter Constraints from a SuperCDMS Single-Charge Sensitive Detector.
R. Agnese,T. Aralis,Tsuguo Aramaki,I. J. Arnquist,E. Azadbakht,W. Baker,S. Banik,D. Barker,D. A. Bauer,T. Binder,M. A. Bowles,P. L. Brink,R. Bunker,Blas Cabrera,R. Calkins,C. Cartaro,David G. Cerdeño,David G. Cerdeño,Yu Kai Chang,Jodi Cooley,B. Cornell,P. Cushman,P. Di Stefano,T. Doughty,E. Fascione,Enectali Figueroa-Feliciano,C. W. Fink,Matthew Fritts,G. Gerbier,R. Germond,M. Ghaith,Sunil Golwala,H. R. Harris,Ziqing Hong,Eric W. Hoppe,L. Hsu,Martin E. Huber,V. Iyer,D. Jardin,Chitrasen Jena,M. H. Kelsey,A. Kennedy,A. Kubik,Noah Kurinsky,Ruth Lawrence,J. V. Leyva,J. V. Leyva,B. Loer,E. Lopez Asamar,P. Lukens,D. MacDonell,D. MacDonell,R. Mahapatra,Vuk Mandic,N. Mast,E. H. Miller,N. Mirabolfathi,Bedangadas Mohanty,J. D. Morales Mendoza,J. K. Nelson,John L. Orrell,S. M. Oser,S. M. Oser,W. A. Page,W. A. Page,R. Partridge,M. Pepin,A. Phipps,Fernando Ponce,S. S. Poudel,Matt Pyle,H. Qiu,W. Rau,A. Reisetter,T. Reynolds,Amy Roberts,A. E. Robinson,H. E. Rogers,R. K. Romani,Tarek Saab,Bernard Sadoulet,Bernard Sadoulet,J. Sander,A. Scarff,A. Scarff,R. W. Schnee,S. Scorza,Kartik Senapati,B. Serfass,J. So,Danielle Speller,C. Stanford,M. Stein,J. Street,Hiromasa Tanaka,D. Toback,R. Underwood,A. N. Villano,B. von Krosigk,B. von Krosigk,S. L. Watkins,John Wilson,M. J. Wilson,J. Winchell,D. H. Wright,S. J. Yellin,Betty A. Young,Betty A. Young,X. Zhang,Xingbo Zhao +109 more
TL;DR: These first limits on inelastic electron-scattering dark matter and dark photon absorption are presented using a prototype SuperCDMS detector having a charge resolution of 0.1 electron-hole pairs and demonstrated a sensitivity to dark photons competitive with other leading approaches but using substantially less exposure.
Constraints on low-mass, relic dark matter candidates from a surface-operated SuperCDMS single-charge sensitive detector
D. W. P. Amaral,T. Aralis,Tsuguo Aramaki,I. J. Arnquist,E. Azadbakht,S. Banik,D. Barker,C. Bathurst,D. A. Bauer,L. V. S. Bezerra,L. V. S. Bezerra,R. Bhattacharyya,T. Binder,M. A. Bowles,P. L. Brink,R. Bunker,Blas Cabrera,R. Calkins,R. A. Cameron,C. Cartaro,David G. Cerdeño,David G. Cerdeño,Yu Kai Chang,R. Chen,N. Chott,Jodi Cooley,H. Coombes,J. Corbett,P. Cushman,F. De Brienne,M. L. di Vacri,M. Diamond,E. Fascione,E. Fascione,Enectali Figueroa-Feliciano,C. W. Fink,K. Fouts,Matthew Fritts,G. Gerbier,R. Germond,R. Germond,M. Ghaith,Sunil Golwala,H. R. Harris,N. Herbert,B. A. Hines,M. I. Hollister,Ziqing Hong,Eric W. Hoppe,L. Hsu,Martin E. Huber,V. Iyer,D. Jardin,A. Jastram,M. H. Kelsey,A. Kubik,Noah Kurinsky,Ruth Lawrence,A. Li,A. Li,Ben Loer,E. Lopez Asamar,P. Lukens,D. MacDonell,D. MacDonell,D. B. MacFarlane,R. Mahapatra,Vuk Mandic,N. Mast,A. J. Mayer,M. Michaud,E. Michielin,E. Michielin,N. Mirabolfathi,Bedangadas Mohanty,J. D. Morales Mendoza,S. Nagorny,J. K. Nelson,H. Neog,V. Novati,John L. Orrell,S. M. Oser,S. M. Oser,W. A. Page,P. Pakarha,R. Partridge,R. Podviianiuk,Fernando Ponce,S. S. Poudel,Matt Pyle,W. Rau,E. Reid,R. Ren,T. Reynolds,Amy Roberts,A. E. Robinson,H. E. Rogers,Tarek Saab,Bernard Sadoulet,Bernard Sadoulet,J. Sander,A. Sattari,R. W. Schnee,S. Scorza,Bruno Serfass,D. J. Sincavage,C. Stanford,M. Stein,J. Street,D. Toback,R. Underwood,R. Underwood,Seema Verma,A. N. Villano,B. von Krosigk,S. L. Watkins,L. Wills,John Wilson,M. J. Wilson,M. J. Wilson,J. Winchell,Douglas Wright,S. J. Yellin,Betty A. Young,To Chin Yu,E. Zhang,H. G. Zhang,Xingbo Zhao,L. Zheng +128 more
TL;DR: In this article, the authors present an analysis and the resulting limits on light dark matter inelastically scattering off of electrons, and on dark photon and axion-like particle absorption, using a second-generation SuperCDMS high-voltage eV-resolution detector.
179
Light Dark Matter Search with a High-Resolution Athermal Phonon Detector Operated above Ground.
I. Alkhatib,D. W. P. Amaral,T. Aralis,Tsuguo Aramaki,I. J. Arnquist,I. Ataee Langroudy,E. Azadbakht,S. Banik,D. Barker,C. Bathurst,D. A. Bauer,L. V. S. Bezerra,L. V. S. Bezerra,R. Bhattacharyya,T. Binder,M. A. Bowles,P. L. Brink,R. Bunker,Blas Cabrera,R. Calkins,R. A. Cameron,C. Cartaro,David G. Cerdeño,David G. Cerdeño,Yu Kai Chang,M. Chaudhuri,R. Chen,N. Chott,Jodi Cooley,H. Coombes,J. Corbett,P. Cushman,F. De Brienne,M. L. di Vacri,M. Diamond,E. Fascione,E. Fascione,Enectali Figueroa-Feliciano,C. W. Fink,K. Fouts,Matthew Fritts,G. Gerbier,R. Germond,R. Germond,M. Ghaith,Sunil Golwala,H. R. Harris,N. Herbert,B. A. Hines,M. I. Hollister,Ziqing Hong,Eric W. Hoppe,L. Hsu,Martin E. Huber,V. Iyer,D. Jardin,A. Jastram,V. K. S. Kashyap,M. H. Kelsey,A. Kubik,Noah Kurinsky,Ruth Lawrence,A. Li,A. Li,Ben Loer,E. Lopez Asamar,P. Lukens,D. MacDonell,D. MacDonell,D. B. MacFarlane,R. Mahapatra,Vuk Mandic,N. Mast,A. J. Mayer,H. Meyer Zu Theenhausen,É. M. Michaud,E. Michielin,E. Michielin,N. Mirabolfathi,Bedangadas Mohanty,J. D. Morales Mendoza,S. Nagorny,J. K. Nelson,H. Neog,V. Novati,John L. Orrell,S. M. Oser,S. M. Oser,W. A. Page,P. Pakarha,R. Partridge,R. Podviianiuk,Fernando Ponce,S. S. Poudel,Matt Pyle,W. Rau,E. Reid,R. Ren,T. Reynolds,Amy Roberts,A. E. Robinson,Tarek Saab,Bernard Sadoulet,Bernard Sadoulet,J. Sander,A. Sattari,R. W. Schnee,S. Scorza,Bruno Serfass,D. J. Sincavage,C. Stanford,J. Street,D. Toback,R. Underwood,R. Underwood,Seema Verma,A. N. Villano,B. von Krosigk,S. L. Watkins,L. Wills,John Wilson,M. J. Wilson,M. J. Wilson,J. Winchell,D. H. Wright,S. J. Yellin,Betty A. Young,T. C. Yu,Emily Z. Zhang,H. G. Zhang,Xingbo Zhao,L. Zheng,J. Camilleri,Yu. G. Kolomensky,Yu. G. Kolomensky,S. Zuber +135 more
TL;DR: This exclusion analysis sets the most stringent dark matter-nucleon scattering cross-section limits achieved by a cryogenic detector for dark matter particle masses from 93 to 140 MeV/c^{2}, with a raw exposure of 9.9 g d acquired at an above-ground facility.
139
Erratum: First Dark Matter Constraints from a SuperCDMS Single-Charge Sensitive Detector [Phys. Rev. Lett. 121, 051301 (2018)].
R. Agnese,T. Aralis,Tsuguo Aramaki,I. J. Arnquist,E. Azadbakht,W. Baker,S. Banik,D. Barker,D. A. Bauer,T. Binder,M. A. Bowles,P. L. Brink,R. Bunker,Blas Cabrera,R. Calkins,C. Cartaro,David G. Cerdeño,Yen-Yung Chang,Jodi Cooley,B. Cornell,P. Cushman,P. Di Stefano,T. Doughty,E. Fascione,Enectali Figueroa-Feliciano,C. W. Fink,Matthew Fritts,G. Gerbier,R. Germond,M. Ghaith,Sunil Golwala,H. R. Harris,Ziqing Hong,Eric W. Hoppe,L. Hsu,Martin E. Huber,V. Iyer,D. Jardin,Chitrasen Jena,M. H. Kelsey,A. Kennedy,A. Kubik,Noah Kurinsky,Ruth Lawrence,J. V. Leyva,Ben Loer,E. Lopez Asamar,P. Lukens,D. MacDonell,R. Mahapatra,Vuk Mandic,N. Mast,E. H. Miller,N. Mirabolfathi,Bedangadas Mohanty,J. D. Morales Mendoza,J. K. Nelson,John L. Orrell,S. M. Oser,W. A. Page,R. Partridge,M. Pepin,A. Phipps,Fernando Ponce,S. S. Poudel,Matt Pyle,H. Qiu,W. Rau,A. Reisetter,T. Reynolds,Amy Roberts,A. E. Robinson,H. E. Rogers,R. K. Romani,Tarek Saab,Bernard Sadoulet,J. Sander,A. Scarff,R. W. Schnee,S. Scorza,Kartik Senapati,Bruno Serfass,J. So,Danielle Speller,C. Stanford,M. Stein,J. Street,Hiromasa Tanaka,D. Toback,R. Underwood,A. N. Villano,B. von Krosigk,S. L. Watkins,John Wilson,M. J. Wilson,J. Winchell,D. H. Wright,S. J. Yellin,Betty A. Young,X. Zhang,Xingbo Zhao +100 more
TL;DR: This corrects the article DOI: 10.1103/PhysRevLett.121.051301 to reflect that the paper was originally published in Physical Review Letters, not RevLett, rather than Science, which is correct.
97
Constraints on dark photons and axionlike particles from the SuperCDMS Soudan experiment
T. Aralis,Tsuguo Aramaki,I. J. Arnquist,E. Azadbakht,W. Baker,S. Banik,D. Barker,C. Bathurst,D. A. Bauer,L. V. S. Bezerra,R. Bhattacharyya,T. Binder,M. A. Bowles,P. L. Brink,R. Bunker,Blas Cabrera,R. Calkins,R. A. Cameron,C. Cartaro,David G. Cerdeño,Yu Kai Chang,Jodi Cooley,H. Coombes,J. Corbett,B. Cornell,P. Cushman,F. De Brienne,M. L. di Vacri,M. Diamond,E. Fascione,Enectali Figueroa-Feliciano,C. W. Fink,K. Fouts,Matthew Fritts,G. Gerbier,R. Germond,M. Ghaith,Sunil Golwala,H. R. Harris,N. Herbert,Bruce A. Hines,M. I. Hollister,Ziqing Hong,Eric W. Hoppe,L. Hsu,M. E. Huber,V. Iyer,D. Jardin,A. Jastram,M. H. Kelsey,A. Kennedy,A. Kubik,Noah Kurinsky,Ruth Lawrence,A. Li,Ben Loer,E. Lopez Asamar,P. Lukens,D. MacDonell,D. B. MacFarlane,R. Mahapatra,Vuk Mandic,N. Mast,É. M. Michaud,Emanuele Michielin,N. Mirabolfathi,Bedangadas Mohanty,J. D. Morales Mendoza,S. Nagorny,J. K. Nelson,H. Neog,John L. Orrell,S. M. Oser,W. A. Page,P. Pakarha,R. Partridge,R. Podviianiuk,Fernando Ponce,S. S. Poudel,Matt Pyle,W. Rau,R. Ren,T. Reynolds,Amy Roberts,A. E. Robinson,H. E. Rogers,Tarek Saab,Bernard Sadoulet,J. Sander,R. W. Schnee,S. Scorza,Kartik Senapati,Bruno Serfass,D. J. Sincavage,C. Stanford,M. Stein,J. Street,D. Toback,R. Underwood,Seema Verma,A. N. Villano,B. von Krosigk,S. L. Watkins,L. Wills,John Wilson,M. J. Wilson,J. Winchell,D. H. Wright,S. J. Yellin,Betty A. Young,To Chin Yu,Emily Z. Zhang,Xingbo Zhao,L. Zheng +113 more
TL;DR: In this paper, the authors present an analysis of electron recoils in cryogenic germanium detectors operated during the SuperCDMS Soudan experiment, which is used to set new constraints on the axioelectric coupling of axion-like particles and the kinetic mixing parameter of dark photons.