Cut registry › Jewellery cuts › Square
Jewellery cuts · Step cut
Square Step Cut Diamond
The carré.
A plain square step cut with sharp uncut corners. On our census it is the best-performing
non-round shape on the site, which is not where anyone expects to find it.
- Facets
- 69
- Length : width
- 1.00
- Table
- 44.2%
- Depth
- 65.0%
- Pavilion
- 40°
The short version
A square step cut diamond, known in the trade as a carré, is a square stone with sharp
uncut corners and facets arranged in flat parallel steps rather than in triangles and kites.
It is the square counterpart of the emerald cut: the same step architecture, without the cut
corners and without the elongation.
Definition
What is a Square cut diamond?
The carré is an Art Deco shape, most often seen as a side stone or in geometric bands from
the 1920s and 1930s, and it has been revived steadily since. It is the strictest of the step
cuts: four equal sides, four sharp corners, and nothing softened.
Because it keeps its corners, it is not an asscher. An asscher is a square step cut with the
corners cut off. Take those cut corners away and the stone becomes a carré, gaining a
harder outline and losing the protection those corners provide.
Like every step cut it is an open architecture. Long flat facets show what is inside the stone,
so clarity and colour matter more here than they would in a brilliant of the same size.
Proportions
Square diamond proportions, and what to look for
Commonly cited ranges against our measured reference stone. There is no
standardised proportion set for a carré, so the left column is what the trade tends to use.
GIA issues no cut-quality grade for a carré, and a report will usually
describe it as a square step cut. As with the princess, the corners are the vulnerable part, and
a setting that covers them is not optional.
Light
How light behaves in a square cut
Measured on the census that runs on every cut on this site: 3,200 rays face-up, 2,200
at 20° tilt, on exact facet geometry, against T57 as the standard.
This is the strongest non-round result on the site. The carré returns 85.08%
of entering light usefully and leaks 9.66%, for 84.11 Global against the
standard’s 88.61. Only the historic old european and the Portuguese, both round,
score higher among the shapes we publish.
The reason is in the proportions table above. Its pavilion sits at 40°, within a degree or
so of the angle Tolkowsky solved for, where most of the fancy shapes we measure sit well away
from it. A step cut with the right pavilion angle returns light perfectly well. What the
step architecture changes is the character of the return, not the amount.
It carries 69 active facets for 78.42 on scintillation, above the standard’s
71.82, and its fire reads 72.45. Broad flashes, not fine sparkle, and plenty of light
behind them.
Where the light is: useful return across the face
82.5%
Edge
90.3%
88.2%
Centre
90.3%
82.6%
Edge
Five equal bands across the stone. The carré returns 88.2% across the centre
against 82.5% at the edges, a spread of 5.7 points, against the round-brilliant
control’s 1.0. Far flatter than the princess, whose corners measurably darken.
Against the standard
Square versus the round brilliant
Light return. 85.08% against the standard’s 92.28%, a Global gap of
4.49 points, which places it first of the twenty-one jewellery cuts we publish.
Sparkle character. 78.42 against 71.82. It throws more separate flashes than a
round brilliant, but they are broad step-cut flashes rather than pinpoints.
Clarity. The carré needs more of it. Long open facets hide nothing, exactly as on
an emerald cut.
Durability. Four sharp uncut corners, and the weakest point of the shape. V-prongs or a
bezel are needed, as on a princess.
Price. Less per carat than a comparable round, and usually less than an asscher of the
same size because the outline wastes less rough.
The baseline for all of this is the round brilliant itself. Its facet plan is set out in
the anatomy of a round brilliant, and the measured
standard we compare against is T57, the stone Tolkowsky published
in 1919.
Put them side by side →
Materials
Square in diamond, moissanite and cubic zirconia
In moissanite the carré returns 82.25% for 87.01 Global with fire at
91.36. A step cut shows moissanite’s double refraction clearly, because the long clean
facets give it nowhere to hide.
In cubic zirconia it returns 84.65% for 86.19 Global, leaking 11.15%.
Compare all three for this shape in the Index.
Trade-offs
What the square cut gives, and what it costs
In its favour
- first of the twenty-one jewellery cuts we publish: 84.11 Global, 4.49 points off the standard.
- A pavilion angle of 40°, close to the value Tolkowsky solved for.
- Leaks only 9.66%, against the standard’s 1.88%.
- Sets flush against its neighbours, which is why Art Deco bands use it.
- Scintillation of 78.42, above the standard’s 71.82.
Against it
- Four sharp uncut corners, and no cut corners to protect them.
- Needs higher clarity and colour than a brilliant, as every step cut does.
- Rarely offered as a centre stone, so choice at larger sizes is thin.
- No GIA cut grade, and reports usually describe it only as a square step cut.
- Broad flashes rather than fine sparkle, which is a taste rather than a fault.
Questions
Square cut diamonds: frequently asked questions
The questions buyers actually ask, answered in full. Where the answer is
ours to prove, the figure is measured on the Index; where it is an
established gemological fact, it is stated as one.
What is a square step cut diamond?
A square step cut diamond, called a carré in the trade, is a square stone with sharp uncut corners and facets arranged in flat parallel steps rather than triangles and kites. It is the square counterpart of the emerald cut, and an Art Deco shape by origin.
What is the difference between a carre cut and an asscher?
Corners. An asscher is a square step cut with the corners cut off; a carré keeps them sharp. That makes the carré harder in outline and considerably more fragile, since the cut corners are exactly what protect an asscher from chipping.
How does a square step cut perform against a round brilliant?
Better than most fancy shapes. We measure 85.08% of useful light against the standard’s 92.28% and 84.11 Global against 88.61, a gap of 4.49 points. That places it first of the twenty-one jewellery cuts we publish, and it comes from a pavilion angle of 40°, close to what Tolkowsky solved for.
Do step cuts return less light than brilliants?
Not inherently, and this cut is the proof. What a step cut changes is the character of the return: broad flashes from long flat planes rather than fine sparkle from small triangles. Light return is decided by the pavilion angle, and a step cut with the right angle performs perfectly well.
Are carre cut diamonds fragile?
The corners are. Four sharp uncut corners sit where diamond cleaves most readily, exactly as on a princess cut, and they need V-prongs or a bezel that covers them. Ordinary round prongs sit beside a corner rather than over it.
What clarity do I need for a square step cut?
Higher than for a brilliant of the same size. The long open facets display inclusions plainly, so VS1 is a sensible floor and VS2 only on a stone verified eye-clean face-up.
Does GIA give carre cuts a cut grade?
No. GIA issues cut grades for round brilliants only. A report will usually describe the stone as a square step cut and record colour, clarity, carat, symmetry and polish.
Where would I see a carre cut diamond?
Most often as a side stone or in geometric bands, particularly Art Deco pieces from the 1920s and 1930s and modern designs drawing on them. It is uncommon as a centre stone, which is why availability at larger sizes is limited.
Method
Ray census
Monte-Carlo on exact facet geometry: 3,200 rays face-up plus 2,200 at
20° tilt, cosine-weighted from a 7° near-vertical cone. Useful light is what exits through
the crown within 64° of vertical. The same protocol runs on every cut on this site, so the
figures are comparable to each other.
What the figures describe
They measure our reference geometry for the shape
at the proportions listed above, not an average of stones on the market. A square
cut to different proportions will read differently. Treat them as a like-for-like comparison
between shapes, not as a grade for any individual stone.
Read with care
Engine estimates, ±2 points, not lab-certified grades. We do
not publish the Index symmetry axis on these pages: it scores facet regularity within each
pavilion family, which is meaningful for a round brilliant and misleading for a shape whose
pavilion is deliberately irregular.
Scintillation
78.42 here against the standard’s 71.82.
The term is 100(1−e−n/45) on the count of facets
that actually reach the surface, so it is a pure function of facet count and nothing else.