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Matthew D. Eisaman
Matthew D. Eisaman
Yale University, Ebb Carbon, Inc.
Verified email at yale.edu - Homepage
Title
Cited by
Cited by
Year
Invited review article: Single-photon sources and detectors
MD Eisaman, J Fan, A Migdall, SV Polyakov
Review of scientific instruments 82 (7), 2011
19152011
Electromagnetically induced transparency with tunable single-photon pulses
MD Eisaman, A André, F Massou, M Fleischhauer, AS Zibrov, MD Lukin
Nature 438 (7069), 837-841, 2005
9442005
Atomic memory for correlated photon states
CH van der Wal, MD Eisaman, A André, RL Walsworth, DF Phillips, ...
Science 301 (5630), 196-200, 2003
6342003
Sub-50-nm self-assembled nanotextures for enhanced broadband antireflection in silicon solar cells
MDECTB Atikur Rahman, Ahsan Ashraf, Huolin Xin, Xiao Tong, Peter Sutter
Nature Communications 6, 5963, 2015
3032015
CO 2 separation using bipolar membrane electrodialysis
MD Eisaman, L Alvarado, D Larner, P Wang, B Garg, KA Littau
Energy & Environmental Science 4 (4), 1319-1328, 2011
2522011
CO 2 extraction from seawater using bipolar membrane electrodialysis
MD Eisaman, K Parajuly, A Tuganov, C Eldershaw, N Chang, KA Littau
Energy & Environmental Science 5 (6), 7346-7352, 2012
2212012
Laser cooling of a solid by 65 K starting from room temperature
TR Gosnell
Optics Letters 24 (15), 1041-1043, 1999
2151999
Energy Storage via Carbon-Neutral Fuels Made From CO, Water, and Renewable Energy
RJ Pearson, MD Eisaman, JWG Turner, PP Edwards, Z Jiang, ...
Proceedings of the IEEE 100 (2), 440-460, 2011
1982011
Shaping quantum pulses of light via coherent atomic memory
MD Eisaman, L Childress, A André, F Massou, AS Zibrov, MD Lukin
Physical review letters 93 (23), 233602, 2004
1802004
CO2 desorption using high-pressure bipolar membrane electrodialysis
MD Eisaman, L Alvarado, D Larner, P Wang, KA Littau
Energy & Environmental Science 4 (10), 4031-4037, 2011
1202011
Laser cooling of a solid by 21?? K starting from room temperature
X Luo, MD Eisaman, TR Gosnell
Optics Letters 23 (8), 639-641, 1998
1101998
Indirect ocean capture of atmospheric CO2: Part I. Prototype of a negative emissions technology
CF de Lannoy, MD Eisaman, A Jose, SD Karnitz, RW DeVaul, K Hannun, ...
International journal of greenhouse gas control 70, 243-253, 2018
1072018
Spectrally bright and broad fiber-based heralded single-photon source
EA Goldschmidt, MD Eisaman, J Fan, SV Polyakov, A Migdall
Physical Review A—Atomic, Molecular, and Optical Physics 78 (1), 013844, 2008
1062008
Indirect ocean capture of atmospheric CO2: Part II. Understanding the cost of negative emissions
MD Eisaman, JLB Rivest, SD Karnitz, CF de Lannoy, A Jose, RW DeVaul, ...
International journal of greenhouse gas control 70, 254-261, 2018
992018
Bright phase-stable broadband fiber-based source of polarization-entangled photon pairs
J Fan, MD Eisaman, A Migdall
Physical Review A—Atomic, Molecular, and Optical Physics 76 (4), 043836, 2007
912007
Quantum control of light using electromagnetically induced transparency
A Andre, MD Eisaman, RL Walsworth, AS Zibrov, MD Lukin
Journal of Physics B: Atomic, Molecular and Optical Physics 38 (9), S589, 2005
712005
Energy-efficient electrochemical CO2 capture from the atmosphere
MD Eisaman, DE Schwartz, S Amic, D Larner, J Zesch, F Torres, K Littau
Technical Proceedings of the 2009 Clean Technology Conference and Trade Show …, 2009
622009
Assessing technical aspects of ocean alkalinity enhancement approaches
M Eisaman, S Geilert, P Renforth, L Bastianini, J Campbell, A Dale, ...
State of the Planet Discussions 2023, 1-52, 2023
502023
Simulated Impact of Ocean Alkalinity Enhancement on Atmospheric CO2 Removal in the Bering Sea
H Wang, DJ Pilcher, KA Kearney, JN Cross, OM Shugart, MD Eisaman, ...
Earth's Future 11 (1), e2022EF002816, 2023
432023
The role of carbon capture, utilization, and storage for economic pathways that limit global warming to below 1.5° C
JG Vitillo, MD Eisaman, ESP Aradottir, F Passarini, T Wang, SW Sheehan
IScience 25 (5), 2022
422022
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Articles 1–20