H. Hirose, K. Hirahara, F. Kimata, N. Fujii, and S. Miyazaki, A slow thrust slip event following the two 1996 Hyuganada earthquakes beneath the Bungo Channel, southwest Japan, Geophys. Res. Lett, vol.26, pp.3237-3240, 1999.

H. Dragert, K. Wang, and T. S. James, A silent slip event on the deeper Cascadia subduction interface, Science, vol.292, pp.1525-1528, 2001.

K. Obara, Nonvolcanic deep tremor associated with subduction in southwest Japan, Science, vol.296, pp.1679-1681, 2002.

K. Obara, H. Hirose, F. Yamamizu, and K. Kasahara, Episodic slow slip events accompanied by non-volcanic tremors in southwest Japan subduction zone, Geophys. Res. Lett, vol.31, p.23602, 2004.

G. Rogers and H. Dragert, Episodic tremor and slip on the Cascadia subduction zone: The chatter of silent slip, Science, vol.300, pp.1942-1943, 2003.

X. Gao and K. Wang, Rheological separation of the megathrust seismogenic zone and episodic tremor and slip, Nature, vol.543, pp.416-419, 2017.

P. Audet and Y. Kim, Teleseismic constraints on the geological environment of deep episodic slow earthquakes in subduction zone forearcs: A review, Tectonophysics, vol.670, pp.1-15, 2016.

D. R. Shelly, G. C. Beroza, and S. Ide, Non-volcanic tremor and low-frequency earthquake swarms, Nature, vol.446, pp.305-307, 2007.

J. C. Hawthorne and A. M. Rubin, Short-time scale correlation between slow slip and tremor in Cascadia, J. Geophys. Res. Solid Earth, vol.118, pp.1316-1329, 2013.

E. F. Smith and J. Gomberg, A search in strainmeter data for slow slip associated with triggered and ambient tremor near Parkfield, California, J. Geophys. Res. Solid Earth, vol.114, 2009.

W. B. Frank, M. Radiguet, B. Rousset, N. M. Shapiro, A. L. Husker et al., Uncovering the geodetic signature of silent slip through repeating earthquakes, Geophys. Res. Lett, vol.42, pp.2774-2779, 2015.

W. B. Frank, Slow slip hidden in the noise: The intermittence of tectonic release, Geophys. Res. Lett, vol.43, pp.10125-10133, 2016.

A. Aytun, Creep measurements in the Ismetpasa region of the North Anatolian Fault Zone, Multidisciplinary Approach to Earthquake Prediction, pp.279-292, 1982.

A. T. Linde, M. T. Gladwint, M. J. Johnston, R. L. Gwythert, and R. G. Bilham, A slow earthquake sequence on the San Andreas fault, Nature, vol.383, pp.65-68, 1996.

B. Rousset, R. Jolivet, M. Simons, C. Lasserre, B. Riel et al., An aseismic slip transient on the North Anatolian Fault, Geophys. Res. Lett, vol.43, pp.3254-3262, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02185458

M. Wei, D. Sandwell, and Y. Fialko, on the Superstition Hills fault, southern California, A silent M w 4, vol.114, p.7402, 2006.

R. M. Nadeau and A. Guilhem, Nonvolcanic tremor evolution and the San Simeon and Parkfield, California, earthquakes, Science, vol.325, pp.191-193, 2009.

C. J. Chamberlain, D. R. Shelly, J. Townend, and T. A. Stern, Low-frequency earthquakes reveal punctuated slow slip on the deep extent of the alpine fault, New Zealand. Geochem. Geophys. Geosyst, vol.15, pp.2984-2999, 2014.

A. G. Wech, C. M. Boese, T. A. Stern, and J. Townend, Tectonic tremor and deep slow slip on the alpine fault, Geophys. Res. Lett, vol.39, p.10303, 2012.

S. H. Kirby, K. Wang, and T. M. Brocher, A large mantle water source for the northern San Andreas fault system: A ghost of subduction past, Earth Planets Space, vol.66, p.67, 2014.

D. R. Shelly, A 15 year catalog of more than 1 million low-frequency earthquakes: Tracking tremor and slip along the deep San Andreas Fault, J. Geophys. Res. Solid Earth, vol.122, pp.3739-3753, 2017.

B. Rousset, M. Campillo, C. Lasserre, W. B. Frank, N. Cotte et al., A geodetic matched filter search for slow slip with application to the Mexico subduction zone, J. Geophys. Res. Solid Earth, vol.122, pp.10498-10514, 2017.

A. M. Thomas, G. C. Beroza, and D. R. Shelly, Constraints on the source parameters of low-frequency earthquakes on the san andreas fault, Geophys. Res. Lett, vol.43, pp.1464-1471, 2016.

H. Kao, K. Wang, H. Dragert, J. Y. Kao, and G. Rogers, Estimating seismic moment magnitude (M w ) of tremor bursts in northern Cascadia: Implications for the "seismic efficiency" of episodic tremor and slip, Geophys. Res. Lett, vol.37, p.19306, 2010.

I. Ryder and R. Bürgmann, Spatial variations in slip deficit on the central San Andreas fault from InSAR, Geophys. J. Int, vol.175, pp.837-852, 2008.

A. M. Thomas, N. M. Beeler, Q. Bletery, R. Burgmann, and D. R. Shelly, Using low-frequency earthquake families on the San Andreas Fault as deep creepmeters, J. Geophys. Res. Solid Earth, vol.123, pp.457-475, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02383079

R. Jolivet, M. Simons, P. Agram, Z. Duputel, and Z. Shen, Aseismic slip and seismogenic coupling along the central San Andreas fault, Geophys. Res. Lett, vol.42, pp.297-306, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01112587

J. R. Murray, P. Segall, P. Cervelli, W. Prescott, and J. Svarc, Inversion of GPS data for spatially variable slip-rate on the San Andreas Fault near Parkfield, CA. Geophys. Res. Lett, vol.28, pp.359-362, 2001.

S. Ide, G. C. Beroza, D. R. Shelly, and T. Uchide, A scaling law for slow earthquakes, Nature, vol.447, pp.76-79, 2007.

Y. Ben-zion, Episodic tremor and slip on a frictional interface with critical zero weakening in elastic solid, Geophys. J. Int, vol.189, pp.1159-1168, 2012.

S. Ide, A Brownian walk model for slow earthquakes, Geophys. Res. Lett, vol.35, p.17301, 2008.

S. Ide and J. Maury, Seismic moment, seismic energy, and source duration of slow earthquakes: Application of brownian slow earthquake model to three major subduction zones, Geophys. Res. Lett, vol.45, pp.3059-3067, 2018.
URL : https://hal.archives-ouvertes.fr/hal-02860742

Y. Liu, Source scaling relations and along-strike segmentation of slow slip events in a 3-D subduction fault model, J. Geophys. Res. Solid Earth, vol.119, pp.6512-6533, 2014.

J. Gomberg, A. Wech, K. Creager, K. Obara, and D. Agnew, Reconsidering earthquake scaling, Geophys. Res. Lett, vol.43, pp.6243-6251, 2016.

S. Barbot, N. Lapusta, and J. Avouac, Under the hood of the earthquake machine: Toward predictive modeling of the seismic cycle, Science, vol.336, pp.707-710, 2012.

N. Lapusta, J. R. Rice, Y. Ben-zion, and G. Zheng, Elastodynamic analysis for slow tectonic loading with spontaneous rupture episodes on faults with rate-and state-dependent friction, J. Geophys. Res. Solid Earth, vol.105, pp.23765-23789, 2000.

A. G. Wech and K. C. Creager, A continuum of stress, strength and slip in the Cascadia subduction zone, Nat. Geosci, vol.4, pp.624-628, 2011.

W. H. Bakun, B. Aagaard, B. Dost, W. L. Ellsworth, J. L. Hardebeck et al., Implications for prediction and hazard assessment from the 2004 Parkfield earthquake, Nature, vol.437, pp.969-974, 2005.

T. A. Herring, T. I. Melbourne, M. H. Murray, M. A. Floyd, W. M. Szeliga et al., Plate Boundary Observatory and related networks: GPS data analysis methods and geodetic products, Rev. Geophys, vol.54, pp.759-808, 2016.

M. Bevis and A. Brown, Trajectory models and reference frames for crustal motion geodesy, J. Geod, vol.88, pp.283-311, 2014.

M. E. Tipping and C. M. Bishop, Probabilistic principal component analysis, J. R. Stat. Soc. Series B Stat. Methodology, vol.61, pp.611-622, 1999.

D. R. Shelly and K. M. Johnson, Tremor reveals stress shadowing, deep postseismic creep, and depth-dependent slip recurrence on the lower-crustal San Andreas fault near Parkfield, Geophys. Res. Lett, vol.38, p.13312, 2011.

D. R. Shelly, Complexity of the deep San Andreas Fault zone defined by cascading tremor, Nat. Geosci, vol.8, pp.145-151, 2015.

Y. Okada, Surface deformation due to shear and tensile faults in a half-space, Bull. Seismol. Soc. Am, vol.75, pp.1135-1154, 1985.

H. Akaike, A new look at the statistical model identification, IEEE Trans. Automat. Contr, vol.19, pp.716-723, 1974.

T. Nishimura, T. Matsuzawa, and K. Obara, Detection of short-term slow slip events along the Nankai Trough, southwest Japan, using GNSS data, J. Geophys. Res. Solid Earth, vol.118, pp.3112-3125, 2013.

F. Waldhauser and D. P. Schaff, Large-scale relocation of two decades of northern California seismicity using cross-correlation and double-difference methods, J. Geophys. Res. Solid Earth, vol.113, p.8311, 2008.

A. J. Barbour and D. C. Agnew, Noise levels on Plate Boundary Observatory borehole strainmeters in southern California, Bull. Seismol. Soc. Am, vol.101, pp.2453-2466, 2011.

N. R. Goulty and R. Gilman, Repeated creep events on the San Andreas fault near Parkfield, California, recorded by a strainmeter array, J. Geophys. Res. Solid Earth, vol.83, pp.5415-5419, 1978.

B. Rousset, R. Bürgmann, M. Campillo, and D. , , p.3274

, Sci Adv REFERENCES