Cut registry › Jewellery cuts › Square radiant
Jewellery cuts · Square brilliant
Square Radiant Cut Diamond
The one with the right pavilion.
Same family as the elongated radiant, same faceting idea, and a very different result. The
difference between the two is almost entirely one angle, and no report records it.
- Facets
- 49
- Length : width
- 1.00
- Table
- 65.0%
- Depth
- 60.1%
- Pavilion
- 55.6°
The short version
A square radiant cut diamond is a square stone with truncated corners and brilliant-style
faceting throughout, carrying 49 facets on our measurement.
It is the square form of the radiant, and on our census it performs considerably better than our
elongated reference radiant does.
Definition
What is a Square radiant cut diamond?
The radiant was developed by Henry Grossbard in 1977 to put a brilliant’s light return
inside a step cut’s outline. It is cut both square and elongated, and the two are usually
discussed as though the only difference were the silhouette.
They are not the same stone. The square radiant is a more compact shape with a shorter path from
table to pavilion, and the pavilion angle a cutter reaches for is different as a result.
Its cut corners give it the same durability advantage the elongated radiant has: no sharp point
to chip, unlike a princess. It is the most robust square brilliant in common production.
Proportions
Square radiant diamond proportions, and what to look for
Trade description on the left, our measured reference stone on the right. The
pavilion figure is the one that matters, and it is the one no grading report records.
GIA issues no cut-quality grade for radiants of any proportion, which matters
more here than on most shapes. The radiant family is unusually sensitive to pavilion angle, and
the report will not tell you what yours is.
Light
How light behaves in a square radiant 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.
The square radiant returns 72.42% of entering light usefully and leaks 12.37%, for
76.82 Global against the standard’s 88.61, placing it eighth of the
twenty-one jewellery cuts we publish.
Set that against our elongated radiant, which returns 31.55% and leaks
41.49%. Same family, same faceting principle, and roughly a third of the leakage.
The elongated reference stone carries a shallow pavilion; this one does not. That single
difference is worth more than eleven points of Global.
This is the clearest demonstration on the site of a point that applies to every fancy shape:
the pavilion angle decides light return, and no grading report records it. Two stones
described identically on paper can sit either side of this gap.
Its weak term is fire, at 62.12 against the standard’s 78.85, the lowest of the
square brilliants we publish. It holds 89.86 under tilt against 90.41.
Where the light is: useful return across the face
77.8%
Edge
92.3%
87.6%
Centre
92.2%
77.9%
Edge
Five equal bands across the stone. The square radiant returns 87.6% at the centre
against 77.8% at the edges, against the round-brilliant control’s 99.1% and
98.1%. Unlike the princess, whose corners measurably darken, this cut keeps its light
fairly evenly spread.
Against the standard
Square radiant versus the round brilliant
Light return. 72.42% against the standard’s 92.28%, a Global gap of
11.78 points.
Against the elongated radiant. 76.82 against 65.14, and 12.37% of leak
against 41.49%. If you are choosing between the two, this is the comparison that matters.
Fire. 62.12 against 78.85, and the weakest figure among the square brilliants
here. The crushed-ice scatter that hides inclusions also averages colour back towards white.
Durability. Truncated corners, so no protective setting is needed. Safer than a princess
and safer than a carré.
Colour. Like every radiant it concentrates body colour rather than dispersing it, so a
white stone usually wants a higher colour grade than a round would.
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 radiant in diamond, moissanite and cubic zirconia
In moissanite it returns 70.92% for 82.29 Global, with fire climbing to 92.55
from 62.12 in diamond. On a cut whose weakest term is fire, a high-dispersion material is the
obvious answer.
In cubic zirconia it returns 74.36% for 82.63 Global.
Compare it with the elongated radiant in the Index.
Trade-offs
What the square radiant cut gives, and what it costs
In its favour
- Leaks only 12.37%, against the elongated radiant’s 41.49%.
- Returns 72.42% of entering light, well above most of the fancy brilliants here.
- Truncated corners, so no protective setting is required.
- Crushed-ice faceting hides inclusions well, so clarity is forgiving.
- Sits flush against other square stones in a band or a cluster.
Against it
- Fire of 62.12 against the standard’s 78.85, the weakest of the square brilliants here.
- Concentrates body colour, so a white stone usually needs a higher colour grade.
- No GIA cut grade, on a shape family that is unusually sensitive to pavilion angle.
- Returns 72.42% against a round brilliant’s 92.28%.
- Sold under the same name as the elongated radiant, which performs very differently.
Questions
Square radiant 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 radiant cut diamond?
A square radiant cut diamond is a square stone with truncated corners and brilliant-style faceting throughout, carrying around 70 facets. It is the square form of the radiant, which Henry Grossbard developed in 1977 to give a step-cut outline the light return of a brilliant.
Is a square radiant better than an elongated radiant?
On our reference geometries, substantially. The square radiant returns 72.42% of entering light and leaks 12.37%, for 76.82 Global; our elongated radiant returns 31.55% and leaks 41.49%. The difference is almost entirely pavilion angle rather than outline, and no grading report records it.
What is the difference between a square radiant and a princess cut?
Corners and pattern. A square radiant has truncated corners, which makes it far more durable; a princess has sharp uncut corners that sit on cleavage planes and chip. A well-cut princess shows a readable X through the table, where a radiant gives a continuous crushed-ice glitter with no pattern.
What colour grade do I need for a square radiant?
Usually higher than for a round of the same size. Radiant faceting concentrates body colour rather than dispersing it, which is exactly why the cut is preferred for fancy yellows and exactly why a white one shows warmth sooner.
Are square radiant cuts durable?
Yes, and they are among the most durable square shapes available. The truncated corners remove the exposed points that make a princess or a carré vulnerable, so no protective setting is required.
What pavilion angle should a radiant have?
Deep enough to hold the light, and that is not a number you will find on a report. Our square reference stone sits at 55.6° and leaks 12.37%; our elongated reference stone has a much shallower pavilion and leaks 41.49%. On a radiant this is the variable that decides everything, and it is invisible on paper.
Does a square radiant hide inclusions?
Well. The many small pavilion facets scatter light into a continuous glitter with no calm windows in it, so inclusions have plenty of visual noise to hide behind. A radiant of either proportion is forgiving on clarity.
Does GIA give square radiant cuts a cut grade?
No. GIA issues cut grades for round brilliants only, and a radiant will be described on a report as a cut-cornered square modified brilliant. That absence matters more here than on most shapes, because the radiant family is unusually sensitive to pavilion angle.
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 radiant
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
66.34 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.