We analyze two dusty star-forming galaxies at z = 6.6. These galaxies are selected from the ASPIRE survey, a JWST Cycle 1 medium program, and the Atacama Large Millimeter/submillimeter Array (ALMA) Cycle 9 large program targeting 25 quasars and their environments at z similar or equal to 6.5-6.8. These galaxies are identified as companions to UV-luminous quasars and robustly detected in ALMA continuum and [C ii] emission, yet they are extraordinarily faint at the NIRCam wavelengths (down to >28.0 AB mag in the F356W band). They are more obscured than galaxies like Arp220 (A(V) up to similar to 7.5 mag), and thus we refer to them as "NIRCam-dark" starburst galaxies (star formation rate similar or equal to 80-250 M-circle dot yr(-1)). Such galaxies are typically missed by (sub)-millimeter blank-field surveys. From the star formation history (SFH), we show that the NIRCam-dark galaxies are viable progenitors of massive quiescent galaxies at z greater than or similar to 4 and descendants of UV-luminous galaxies at z > 10. Although it is hard to constrain their number density from a quasar survey, we conclude that NIRCam-dark galaxies can be as abundant as n similar to 10(-5.5) Mpc(-3) assuming a light halo occupation model. If true, this would equal to similar to 30% of the number densities of both the quiescent galaxies at z greater than or similar to 4 and UV-luminous galaxies at z > 10. We further predict that analogs at z similar to 8 should exist according to the SFH of early massive quiescent galaxies. However, they may fall below the current detection limits of wide JWST and ALMA surveys, and thus remain "JWST-dark." To fully trace the evolution of massive galaxies and dust-obscured cosmic star formation at z greater than or similar to 8, wide-field JWST/NIRCam imaging and slitless spectroscopic surveys of early protoclusters are essential.
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High-redshift galaxies,Luminous infrared galaxies,James Webb Space Telescope,Starburst galaxies,Galaxy evolution