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References
35
Referenced
337
-
Day, P. K., LeDuc, H. G., Mazin, B. A., Vayonakis, A. & Zmuidzinas, J. A broadband superconducting detector suitable for use in large arrays. Nature 425, 817–821 (2003).
(
10.1038/nature02037
) / Nature by PK Day (2003) -
Wallraff, A. et al. Strong coupling of a single photon to a superconducting qubit using circuit quantum electrodynamics. Nature 431, 162–167 (2004).
(
10.1038/nature02851
) / Nature by A Wallraff (2004) -
Zmuidzinas, J. Superconducting microresonators: Physics and applications. Annu. Rev. Condens. Matter Phys. 3, 169–214 (2012).
(
10.1146/annurev-conmatphys-020911-125022
) / Annu. Rev. Condens. Matter Phys. by J Zmuidzinas (2012) -
Castellanos-Beltran, M. A., Irwin, K. D., Hilton, G. C., Vale, L. R. & Lehnert, K. W. Amplification and squeezing of quantum noise with a tunable Josephson metamaterial. Nature Phys. 4, 929–931 (2008).
(
10.1038/nphys1090
) / Nature Phys. by MA Castellanos-Beltran (2008) -
Yamamoto, T. et al. Flux-driven Josephson parametric amplifier. Appl. Phys. Lett. 93, 042510 (2008).
(
10.1063/1.2964182
) / Appl. Phys. Lett. by T Yamamoto (2008) -
Bergeal, N. et al. Phase-preserving amplification near the quantum limit with a Josephson ring modulator. Nature 465, 64–68 (2010).
(
10.1038/nature09035
) / Nature by N Bergeal (2010) -
Spietz, L., Irwin, K., Lee, M. & Aumentado, J. Noise performance of lumped element direct current superconducting quantum interference device amplifiers in the 4–8 GHz range. Appl. Phys. Lett. 97, 142502 (2010).
(
10.1063/1.3497008
) / Appl. Phys. Lett. by L Spietz (2010) -
Hover, D. et al. Superconducting low-inductance undulatory galvanometer microwave amplifier. Appl. Phys. Lett. 100, 063503 (2012).
(
10.1063/1.3682309
) / Appl. Phys. Lett. by D Hover (2012) -
Mück, M., Kycia, J. B. & Clarke, J. Superconducting quantum interference device as a near-quantum-limited amplifier at 0.5 GHz. Appl. Phys. Lett. 78, 967–969 (2001).
(
10.1063/1.1347384
) / Appl. Phys. Lett. by M Mück (2001) -
Zimmer, H. Parametric amplification of microwaves in superconducting Josephson tunnel junctions. Appl. Phys. Lett. 10, 193–195 (1967).
(
10.1063/1.1754906
) / Appl. Phys. Lett. by H Zimmer (1967) -
Moshovich, R. et al. Observation of zero-point noise squeezing via a Josephson parametric amplifier. Phys. Rev. Lett. 65, 1419–1422 (1990).
(
10.1103/PhysRevLett.65.1419
) / Phys. Rev. Lett. by R Moshovich (1990) -
Louisell, W. H., Yariv, A. & Siegman, A. E. Quantum fluctuations and noise in parametric processes. I. Phys. Rev. 124, 1646–1654 (1961).
(
10.1103/PhysRev.124.1646
) / Phys. Rev. by WH Louisell (1961) -
Caves, C. M. Quantum limits on noise in linear amplifiers. Phys. Rev. D 26, 1817–1839 (1982).
(
10.1103/PhysRevD.26.1817
) / Phys. Rev. D by CM Caves (1982) -
Pospieszalski, M. W. Extremely low-noise amplification with cryogenic FETs and HFETs: 1970–2004. IEEE Microw. Mag. 6, 62–75 (2005).
(
10.1109/MMW.2005.1511915
) / IEEE Microw. Mag. by MW Pospieszalski (2005) -
Vijay, R., Slichter, D. H. & Siddiqi, I. Observation of quantum jumps in a superconducting artificial atom. Phys. Rev. Lett. 106, 110502 (2011).
(
10.1103/PhysRevLett.106.110502
) / Phys. Rev. Lett. by R Vijay (2011) -
Clarke, J. & Braginski, A. I. The SQUID Handbook: Fundamentals and Technology of SQUIDs and SQUID Systems 1st edn (Wiley-VCH, 2004).
(
10.1002/3527603646
) / The SQUID Handbook: Fundamentals and Technology of SQUIDs and SQUID Systems by J Clarke (2004) - Irwin, K. D. in AIP Conf. Proc. (eds Young, B., Cabrera, B. & Miller, A.) 229–236 (American Institute of Physics Conference Series, Vol. 1185, 2009). / AIP Conf. Proc. by KD Irwin (2009)
-
Cullen, A. L. A travelling-wave parametric amplifier. Nature 181, 332 (1958).
(
10.1038/181332a0
) / Nature by AL Cullen (1958) -
Tien, P. K. Parametric amplification and frequency mixing in propagating circuits. J. Appl. Phys. 29, 1347–1357 (1958).
(
10.1063/1.1723440
) / J. Appl. Phys. by PK Tien (1958) -
Hansryd, J., Andrekson, P. A., Westlund, M., Li, J. & Hedekvist, P. O. Fiber-based optical parametric amplifiers and their applications. IEEE J. Sel. Top. Quant. Electron. 8, 506–520 (2002).
(
10.1109/JSTQE.2002.1016354
) / IEEE J. Sel. Top. Quant. Electron. by J Hansryd (2002) -
Foster, M. A. et al. Broad-band optical parametric gain on a silicon photonic chip. Nature 441, 960–963 (2006).
(
10.1038/nature04932
) / Nature by MA Foster (2006) -
Tong, Z. et al. Towards ultrasensitive optical links enabled by low-noise phase-sensitive amplifiers. Nature Photon. 5, 430–436 (2011).
(
10.1038/nphoton.2011.79
) / Nature Photon. by Z Tong (2011) -
Sweeny, M. & Mahler, R. A travelling-wave parametric amplifier utilizing Josephson junctions. IEEE Trans. Magn. 21, 654–655 (1985).
(
10.1109/TMAG.1985.1063777
) / IEEE Trans. Magn. by M Sweeny (1985) -
Yurke, B., Roukes, M. L., Movshovich, R. & Pargellis, A. N. A low-noise series-array Josephson junction parametric amplifier. Appl. Phys. Lett. 69, 3078–3080 (1996).
(
10.1063/1.116845
) / Appl. Phys. Lett. by B Yurke (1996) - Parmenter, R. H. Nonlinear electrodynamics of superconductors with a very small coherence distance. RCA Rev. 23, 323–352 (1962). / RCA Rev. by RH Parmenter (1962)
-
Anthore, A., Pothier, H. & Esteve, D. Density of states in a superconductor carrying a supercurrent. Phys. Rev. Lett. 90, 127001 (2003).
(
10.1103/PhysRevLett.90.127001
) / Phys. Rev. Lett. by A Anthore (2003) - Landauer, R. W. Superconductive parametric amplifier. US Patent 3,111,628 (1963).
-
Tholen, E. A. et al. Nonlinearities and parametric amplification in superconducting coplanar waveguide resonators. Appl. Phys. Lett. 90, 253509 (2007).
(
10.1063/1.2750520
) / Appl. Phys. Lett. by EA Tholen (2007) -
Leduc, H. G. et al. Titanium nitride films for ultrasensitive microresonator detectors. Appl. Phys. Lett. 97, 102509 (2010).
(
10.1063/1.3480420
) / Appl. Phys. Lett. by HG Leduc (2010) -
Mattis, D. C. & Bardeen, J. Theory of the anomalous skin effect in normal and superconducting metals. Phys. Rev. 111, 412–417 (1958).
(
10.1103/PhysRev.111.412
) / Phys. Rev. by DC Mattis (1958) -
Pearl, J. Current distribution in superconducting films carrying quantized fluxoids. Appl. Phys. Lett. 5, 65–66 (1964).
(
10.1063/1.1754056
) / Appl. Phys. Lett. by J Pearl (1964) -
Anlage, S. M., Snortland, H. J. & Beasley, M. R. A current controlled variable delay superconducting transmission-line. IEEE Trans. Magn. 25, 1388–1391 (1989).
(
10.1109/20.92554
) / IEEE Trans. Magn. by SM Anlage (1989) -
Stolen, R. & Bjorkholm, J. Parametric amplification and frequency conversion in optical fibers. IEEE J. Quant. Electron. 18, 1062–1072 (1982).
(
10.1109/JQE.1982.1071660
) / IEEE J. Quant. Electron. by R Stolen (1982) -
Landauer, R. Shock waves in nonlinear transmission lines and their effect on parametric amplification. IBM J. Res. Dev. 4, 391–401 (1960).
(
10.1147/rd.44.0391
) / IBM J. Res. Dev. by R Landauer (1960) -
Su, H. T., Wang, Y., Huang, F. & Lancaster, M. J. Superconducting delay lines. J. Supercond. 21, 7–16 (2005).
(
10.1007/s10948-007-0239-2
) / J. Supercond. by HT Su (2005)
Dates
Type | When |
---|---|
Created | 13 years, 1 month ago (July 8, 2012, 1:33 p.m.) |
Deposited | 2 years, 3 months ago (May 18, 2023, 7:50 p.m.) |
Indexed | 1 week, 2 days ago (Aug. 27, 2025, 12:35 p.m.) |
Issued | 13 years, 1 month ago (July 8, 2012) |
Published | 13 years, 1 month ago (July 8, 2012) |
Published Online | 13 years, 1 month ago (July 8, 2012) |
Published Print | 13 years, 1 month ago (Aug. 1, 2012) |
@article{Ho_Eom_2012, title={A wideband, low-noise superconducting amplifier with high dynamic range}, volume={8}, ISSN={1745-2481}, url={http://dx.doi.org/10.1038/nphys2356}, DOI={10.1038/nphys2356}, number={8}, journal={Nature Physics}, publisher={Springer Science and Business Media LLC}, author={Ho Eom, Byeong and Day, Peter K. and LeDuc, Henry G. and Zmuidzinas, Jonas}, year={2012}, month=jul, pages={623–627} }